Showing posts with label energy. Show all posts
Showing posts with label energy. Show all posts

Sunday, December 15, 2024

Can a black hole be a star? Or, can the black sun be possible?



In theory, the ultimate big stars can be quasi-stars. The quasi star is the star there is a black hole inside it. And in some models, those quasi-stars can be invisible. The high energy radiation from black holes can turn a star so hot that it starts to send ultraviolet or some higher energy radiation. 

But can the energy production continue in the black hole? That thing means that the black hole would be so high-energy object. That it sends. Only gravitational, gamma, and X-ray radiations. So could some black holes be so high energy stars that they send only X- and gamma radiation, or is it possible that some stars can send only gravitational radiation? 

We should ask: are some black holes stars? The black hole as the star is based on the theorem that there can be so high energy stars that they send only X- or gamma-rays. The thing can be possible. If there are some kind of very high-energy reactions in the black hole or the "black star". But what those reactions can be? 

The wavelength of the radiation depends on the particle or particle's diameter that sends radiation. So if there is so a high energy star that things like quarks unite in it. That makes it possible for the star can send X- and/or gamma rays. The thing is that it's possible that in the hypothetical extreme quark fusion, the transmitter particles of gamma rays are gluons and X-rays are from the quarks. 

Normally when we talk about nuclear reactions we talk about fission and fusion. In fission, heavy elements like uranium divide and send energy. In fusion lightweight elements like deuterium and tritium impact and that reaction sends energy. 


1) In normal fission heavy atom cores divide. 

2) In normal fusion light atoms collide. 


But...


In quark or quantum versions, subatomic particles divide or collide. 


1) In quantum fission things like neutrons divide. That means their quark structure is released by impacting it with other quarks (or bosons) and then that thing releases the energy of strong nuclear force. 

2) In quantum fusion the electrons impact with atom's core. That thing turns all particles into neutrons. The neutron star is a structure where there are only neutrons. The power field and heavy gravitation make neutron decay impossible. 

2b) The energy impact that comes outside the atom can press neutrons, protons, and electrons into a hypothetical entirety called a quark star. That hypothetical star is the quark star. The entire structure is similar to neutron stars but their quarks are under one common power field. 


The last version produces a black hole. 


2c) It's possible that all structures in the atom and subatomic entirety fall into one entirety called singularity. In that structure, all quarks melt into one single structure. So in that model, the black hole is like one big quark there are multiple power fields around it. It's possible. That so-called quark fusion continues after the supernova explosion. The energy level of a black hole rises differently than in a normal star because its powerful gravity field can pull all energy inside it. 


When that ultimate extreme reaction happens all parts of the subatomic particles send radiation into their own wavelength that is the same as their diameter. So quarks and gluons and some other parts like gravitons send X- gamma- and gravitational radiation. In some models, the source of gravity waves is in the strings in or between quarks. 

But if the star sends only X- or gamma-rays those rays can push energy fields away. And then the outcoming Higgs field tries to fill that structure. And that makes the interaction look like a gravitational reaction. 


The big question is this: does the black hole's energy production continue after that explosion? 


All of those reactions deliver very much energy. But the question is can those reactions like reactions where quarks turn into one entirety continue after the Big Bang explosion? Those things are exciting and interesting models and if some kind of quark fusion continues that means some of those black holes can be stars. When things like quarks impact the singularity that thing releases energy. 

But there are so-called quantum versions of those reactions. In so-called "quantum" or quark fission the quark impacts things like neutrons. Neutrons have three quarks and if that one quark hits between those quarks, that thing can deliver energy. Same way in which subatomic particles fusion things like protons and electrons can impact together forming neutrons. 

In that process, the reaction forms things like neutron stars. The thing is that there is the possibility that there is one more high-energy reaction. In that reaction, the quarks in the neutrons impact forming material called singularity. In quark fusion where quarks collide and act similar way as atoms in fusion, the energy level rises to a very high level. 

But could that thing make possible things like gravity waves? By forming a sustainable or stable version of the reaction where quarks melt together the system requires very much energy. In models, that thing happened only once in the black hole's life. But the incoming energy along with the high-power gravity can make this reaction sustainable. If that quark fusion happens in the black holes that thing can explain many things like gravitational waves. 

When those high-power reactions happen. The gamma- and X-ray radiation form the electromagnetic shadow if they face things like some kind of particles or superstrings. If a radiation string travels through particles like neutrons without touching quarks that thing acts like the thermal pump. That makes the material look cold. And that makes the quantum fields travel to that point. 



Monday, December 2, 2024

Astronomers found a black hole that eats 40 times more than predicted.


"Blazing away inside a dwarf galaxy in the early universe, black hole LID-568 is consuming material some 40 times the theoretical limit, perhaps solving an old riddle of how supermassive black holes grow to maturity so quickly in cosmic time. Credit: NOIRLab/NSF/AURA/J. da Silva/M. Zamani" (Astronomy, This black hole is gulping material 40 times faster than the theoretical limit)


When some black hole or object does something other than others there is some difference in the object itself. 

Or the difference or anomaly is in its environment. When we think of a black hole and its massive gravity field we must understand that it eats visible material and energy.  But black holes also pull dark energy and dark matter into them. 

Maybe that black hole eats more material inside it than it should because there is more visible material near its environment than dark matter. We can say that black holes pull dark matter inside it. So, that means its possible that somebody forgets dark matter's role in the interactions near black holes. 

As we know dark matter is the mysterious gravitational effect. Dark energy is the wave movement that rips the universe in pieces. When dark matter falls into the black hole that event can form energy waves, hot dark energy that pushes material back. 

Because dark energy affects material the black hole should pull also dark energy into it. And dark matter has gravitational interaction. So that means a black hole can pull dark matter into it. 

And even if a hypothetical weakly interacting massive particle, WIMP isn't the source of the entire dark energy it should send wave movement when it interacts like impacts other WIMP. 

That kind of thing can cause energy impulses. And those energy impulses can push particles back. In some other models, the black hole pulls dark energy inside it. That means dark energy forms the ring around the event horizon, just like photons. That means it's possible that dark energy can interact with photons near the black hole event horizon. 


In theories, There are actually, two versions of dark matter and dark energy.


*Cold dark matter

*Cold dark energy


*Hot dark matter

*Hot dark energy


Black holes don't just pull material into them. Acceleration disks around them create energy that pushes objects away from black holes. If some black hole pulls "too much" material into it. That could mean that. There is something. That is missing from its acceleration disk. And if that missing thing is the dark energy sources. That black hole should also pull inside it. And if the missing part of the acceleration disk is the thing that forms dark energy. That black hole could be more "wow" than nobody even dared to think. 

When we look at black holes we always forget one thing. The black hole doesn't just pull objects into it. The black hole's acceleration disk or material disk along with the relativistic jet also creates energy. Or they don't create energy. They transform energy into another form. That energy is the radiation that we see coming from black holes. 

That energy pushes material back from the area around it. That means. If dark matter or WIMP exists those particles should also create the invisible acceleration disk around the black hole. If there is some kind of source for dark energy and black holes pack those sources around it, that means there can be a lot of dark energy that travels out from the black hole's acceleration disk. And if that energy is missing the black hole can pull more material inside it than it should. 

And if that invisible acceleration disk exists that gives part of the energy that pushes objects away from the black hole. So if some black hole eats more than it should that means something can be missing in its acceleration disk. That means energy that travels out from the acceleration disk is weaker than normal. And that causes an idea that maybe the source of dark energy is missing from that black hole's acceleration disk. 

If the dark energy source is in some kind of particle. A black hole should pack those particles around it. And if those particles are missing. Dark energy. That travel out from the acceleration disk is weaker. That causes the effect that less material turns away from around the black hole and its acceleration disk. 


So what does that mean to the black hole that pulls 40 times the material inside it as it should? 


That means. It's possible. That a black hole is in an area. Where there is no dark matter. Or. Maybe dark energy can form similar structures as the radio, microwaves, X-rays, and gamma rays form. Maybe, there are dark energy bursts in the universe. Otherwise. It's possible. That dark energy forms a structure that looks like a cosmic microwave background. 

The observations about galaxies' rotation are opening new models of dark matter. And that means dark matter can form at least nebulas there the dark matter or dark gravity effect is denser than otherwise. So, if the hot dark energy has a source in dark matter that means there might be less dark matter around the black hole that eats 40 times more than it should. But that thing requires research before nobody can give confirmed answers to that mystery. 


https://www.astronomy.com/science/this-black-hole-is-gulping-material-40-times-faster-than-the-theoretical-limit/




 

Thursday, November 21, 2024

The universe's dark second origin is unveiled.


"Dark matter may have sprung from its own “Dark Big Bang,” separate from the traditional Big Bang, with potential proof coming from future experiments detecting gravitational waves. Credit: NASA’s Goddard Space Flight Center/CI Lab, edited" (ScitechDaily, The Dark Big Bang: Unveiling the Universe’s Hidden Second Origin)

It's possible. That dark matter is the shadows in the Higgs field. But we cannot be sure about that. 

The evidence that the universe did not begin from one event is stronger. That means that the Big Bang was a series of events that included many forms and energy levels before the material and energy formed. The dark Big Bang is the model that there were material before the universe. The dark Big Bang means that the dark matter is released in its own event. And that is one of the most interesting theories in the world. If the dark matter formed in a different, unique event that means it would be hard to see that material even if it's similar to visible material. 

The reason for that is that the dark matter particles or their elementary particle size will be different from than visible material. That means the wavelength that the dark matter particles send would be different than the wavelengths that we see. The different origin of the dark matter is one of the ways how to close that mysterious interaction. The young universe was different than the modern universe. The temperature of that universe was higher. And differences between energy levels were lower than in the modern universe. 

That means the energy flow from higher energy levels was slower and that means in the very young universe other fermions than just up and down quarks and electrons could form "stable" particles. The thing is that the muons and top and bottom quarks should have the ability to form "similar" particles as up and down quarks and electrons. The fast energy flow destroys those structures in the modern universe. But in a very high-energy environment that kind of hypothetical material could be possible. But that cannot happen in the modern universe because of the short existence of those particles. That material requires higher energy and more stable conditions. 



The sombrero model tells how gravity destroys the material. A standing gravity wave surrounds all particles. That gravity wave is the low energy area around particles or other gravity centers. If the differences between the particle's energy level and the bottom of the energy ditch around the particle are high enough, energy travels out from from particle so fast that it destroys it. 

When we think of models that gravity destroys the universe or all matter from inside it, we can think that the gravity ditch or gravity wave surrounds all particles. The gravity wave or lower energy area that forms the ditch around particles is the thing, that causes energy flow in it. The energy travels from outside and another energy wave comes from the particle inside that "sombrero". 

If the standing gravity wave or pothole is too deep particle vanishes into it. If we make a model where energy travels to that particle from above, that thing can cause reflection that covers the gravitation or energy pothole. Just like water that creates a roof-like form when we aim water dush to peg straight from above. The problem is that if the gravitational pothole is deep enough that causes a situation where energy travels out from the particle very fast. 

That thing rips their structure immediately. So can gravitation be the negative energy?  The idea is that. Negative energy is the energy that travels away from a particle. And the energy that travels into particles is positive energy. The determinator is in the energy flow direction. If the gravity wave is a lower energy point in the base energy field in the universe that means gravity itself or the energy flow that gravity causes is the negative energy. 

https://scitechdaily.com/the-dark-big-bang-unveiling-the-universes-hidden-second-origin/

Sunday, November 10, 2024

The microquasar V 4146 Sgr tells. That stellar mass black holes can create as high energy levels as supermassive black holes.


"Schematic illustration of the V4641Sgr region. Credit: HAWC Collaboration" (https://wipac.wisc.edu/ HAWC detection of an ultra-high-energy gamma-ray bubble around a microquasar)

The microquasar is the binary star system where a visible star orbits a stellar-mass black hole. The most well-known microquasar is Cygnus X-1. The first confirmed black hole. The microquasar V 4146 Sagittarii surprises researchers. That microquasar sends photons. That energy level is even 200 TeV. That means the microquasar V 4641 Sgr Gives those photons an energy level that is almost the same as distant quasars that form around supermassive black holes. 

How does the stellar-mass black hole give those photons the same energy level as supermassive black holes? Microquasars form in binary star systems where a regular star orbits a black hole. The black hole pulls material inside it. And then. It can create similar relativistic jets as the distant quasars. 

The V 4146 Sgr is the binary star system where the late B class supergiant mass about three suns orbits a black hole whose mass is about six suns. The visible partner has been much bigger but the black hole pulls material from it. The V4146 Sgr tells that the beginning of the high-energy radiation from the black holes starts always in the same place. The distance between those particles to the event horizon is always the same regardless of does the radiation comes from stellar mass or a supermassive black hole. 

The particle that escapes from the black hole material disk very close to the event horizon sends Cherenkov radiation when it impacts fields and material in the outer lower energy material disk. In extremely dense, high-energy radiation the particle can jump from the vacuum pocket where it starts to deliver energy. 

That means the energy level near supermassive black holes and stellar black hole event horizon is the same. When a particle falls in a black hole the last moment when we see it is the point called the event horizon. That is the point when escaping velocity reaches the speed of light. Particles and radiation form and whirl around the black hole. 

Because radiation travels faster than the particles near the event horizon it starts to transfer energy into them. The energy level of those particles rises to an extremely high level. At that moment, the particle that is in the inner circle of the material disk can jump away from its position. When the inner particle's energy level rises high enough. It can send an energy pulse to the lower-energy particle. Then it can push that particle away from its trajectory. 

The black holes are extremely heavy objects. They might look like stable. But the shape of the event horizon changes. At that point. The photon or some other particle can escape from the black hole. That means the event horizon can fall away from those particles. 

In some models, the transition disk around the black hole forms a whirl or spiral-shaped structure where material and energy form the structure that looks like the LP disk or string-shaped spirals. If the particle travels between those spiraling strings. They can transfer energy to them. That means the energy level of those particles rises so high, that they can travel faster than the speed of light in the material that is in the transition disk. When a particle jumps out from its trajectory. It releases energy. 

In a material disk, the particle that is closer to the event horizon is at a higher energy level. When that material starts to travel away from the inner trajectory. That particle can start to send radiation because the energy level around it turns lower. Any particle that has mass cannot have unlimited slowing. That particle can slow its speed only if it can transport extra energy to the environment. 


https://phys.org/news/2024-10-earth-microquasar-emerges-source-powerful.html


https://umdphysics.umd.edu/about-us/news/research-news/1991-hawc-gamma.html


https://wipac.wisc.edu/hawc-detection-of-an-ultra-high-energy-gamma-ray-bubble-around-a-microquasar/


https://en.wikipedia.org/wiki/Cygnus_X-1


https://en.wikipedia.org/wiki/Microquasar


https://en.wikipedia.org/wiki/Quasar


https://en.wikipedia.org/wiki/V4641_Sagittarii

Friday, November 8, 2024

Black holes, Hawking radiation, and Eddington limit.


"Black hole accretion disks emit varying light due to the black hole’s spin, recent simulations indicate. This new insight could help explain the variable brightness of these cosmic phenomena. Credit: SciTechDaily.com" (ScitechDaily, Black Hole Spins Unravel the Mystery of Ultraluminous Light)

"Gas swirling around black holes forms disks that are among the most effective energy converters in the universe, emitting light and jets of plasma. Recent simulations have shown that as black holes spin, these disks can wobble, changing the direction of what they emit." (ScitechDaily, Black Hole Spins Unravel the Mystery of Ultraluminous Light)

Superluminous plasma orbits black holes. That plasma has a higher temperature and higher luminosity than the Eddington mass limit allows. The problem with the Eddington mass limit is that it is made for "regular stars," and nuclear reactions start from inside it. The black hole inside the transition disk is like a vacuum. 

It pulls energy inside it, and the superstrong gravity effect keeps the disk in its form. Regular stars transmit much energy in the infrared and visible light forms. The black holes send lots of gamma- and X-ray radiation that has another type of effect on the material disk. X- and gamma-rays are the result of high-energy reactions near the black hole or its event horizon. 

The X- and gamma rays transfer less energy to the transition disk than IR radiation. The IR radiation transfers lots of energy to the material. That means that the IR radiation breaks the form of material very effectively because it increases the free energy in the system. A black hole forms an energy dump that pulls free energy away from the material disk. And that's why a black hole's material disk will not follow the Eddington mass limit. 

Another thing is that the black hole's gravity and other energy fields are denser than any other object. A black hole is the only object in the universe that puts photons to orbit it. That means the black hole can form spiral light. When the photons escape from the space around the spin axle near the black hole's event horizon. Those photons can travel out from the black hole's gravity field to form a spiral-shaped structure or spiral light. 

When we think about things like Hawking radiation that can destroy black holes, we face another little problem. When we think that a gravity wave is the thing that decreases the mass of the black hole, the question is: what launches those gravity waves? Does Hawking radiation turn into gravity waves when it reaches the event horizon? 

In that model, the black hole is like an onion. Full of shells that formed from gravity waves or internal gravity fields. If we think that the gravity wave is the shell of the black hole, The event horizon is the point where the gravity field pulls a photon inside a black hole. 

When a black hole sends gravity waves, it sends one of its shells away. That thing can release photons that are just below the event horizon. The Hawking radiation is hypothetical radiation that is left from black holes. That radiation can also boost the photon's energy level. 

But how does Hawking radiation come from inside the event horizon? If nothing can escape from the black hole? The answer could be in another still hypothetical particle called Tachyon, the hypothetical faster-than-light particle. 

Albert Einstein believed that gravity was only a feature of spacetime. That means the tachyon can also be one feature of an electron or photon. When a black hole pulls fields inside it, the photon must travel against the field or wave movement. 

That could make it possible for photons or even particles with mass to cross virtually the speed of light. That happens when it travels against some field or wave movement. That means the black hole could form tauyons. 

If escaping velocity is the same as the speed of light and there comes some kind of energy impulse from inside the gravity field, that impact can send photons to travel against that falling field. This means the photon can create a hole in the gravity field. 

If a gravity field is the thing that acts like all other fields, there could be similar shadows that form in electromagnetic fields. This means that if tachyon is real, it can form a hole in the gravity field. And that hole makes it possible for photons to flee from that powerful gravity field. 

That means that black holes should also form gravity tornadoes. Those spiral-shaped gravity waves are things. That is forming an idea of the wormhole. The gravity tornado is the hole in the Higgs field. The Higgs field is the energy field that forms the universe. 


https://www.britannica.com/science/Eddington-mass-limit


https://scitechdaily.com/black-hole-spins-unravel-the-mystery-of-ultraluminous-light/


https://simple.wikipedia.org/wiki/Eddington_limit


https://en.wikipedia.org/wiki/Eddington_luminosity


https://en.wikipedia.org/wiki/Hawking_radiation


https://en.wikipedia.org/wiki/Tachyon

Saturday, November 2, 2024

Can black hole jets travel faster than light?


"The Chandra X-ray Observatory reveals the jet of Centaurus A, extending into the upper left corner of the image. Researchers have found new insights in the jet by focusing on the motion of the bright spots, or knots, within the jet. Credit: Used under a CC-BY 4.0 license from D. Bogensberger et al. Astrophys. J. (2024) DOI: 10.3847/1538-4357/ad73a1" (ScitechDaily, Faster Than Light? How X-Rays Unravel Mysteries of Black Hole Jets)


Black hole jets are connected with the laws of physics. Normally, anything can travel faster than the speed of light. But there are two paradoxes. That can affect all particles and wave movement. 

The impact speed between particles and wave movement or impact speed with two particles can rise higher than the speed of light. That means the impact speed of two particles is the total speed of those impacting particles. The impact speed is simple to calculate. (The speed of particle 1+ the speed of particle 2).  

So, if the speed of particle 1 is 70% of the speed of light and the particle 2 speed is 70% of the speed of light. That makes the impact speed is 140% of the speed of light. The other version is this. The speed of light is higher in a vacuum than it is in air or water. That means when a particle with mass arrives into the atmosphere. It travels faster than the speed of light in the air. 

The other version is this. If an impacting field or radiation travels in the opposite direction than a particle that makes it possible that particle virtually crosses the speed of light. The impact speed with particle and field is higher than the speed of light. The WARP drive base is in the idea that the craft pulls electromagnetic fields or ions against the craft. And that raises the impact speed of the craft and field higher than the speed of light. 



Diagram of the Alcubierre WARP drive. 


The idea of the WARP drive is that the WARP system looks like a jet engine. When the system pulls a magnetic field into the WARP system, it forms an electromagnetic vacuum or EM low-pressure "shadow" at the front of the craft. The electromagnetic low pressure pulls the craft forward. The wave behind the craft pushes it forward. The difference in the bottom of the forward wave and the top of the following wave determines how fast energy travels through the craft. That energy is the thing that pushes craft forward. 

When a particle slows its speed it must transport its energy to the medium. We see that thing as a blue sky. In the same way, the nuclear reactor sends neutrons to water at a speed that is higher than the speed of light in water. 

When a neutron slows its speed. It sends blue light flashes because it must transfer its energy somewhere. And we see that effect as blue shine around the reactor. The name of that shine is Cherenkov radiation. 





"Cherenkov radiation glowing in the core of the Advanced Test Reactor at Idaho National Laboratory" (Wikipedia, Cherenkov radiation)


The question is: can dark energy be some kind of Cherenkov radiation? 


Sometimes we can ask: can the X- or gamma-ray burst from the black hole travel faster than the speed of light? It's possible. Ahat gamma- and X-ray radiation pushes all material from its route. That means there is a cosmic void there is only high-energy radiation in the black hole's energy beam. That beam can create a tunnel. Where there are no disturbing electromagnetic fields or particles. 

That means there is no crossing electromagnetic fields. And there is no Hall effect. Even if we know the Hall effect as resistance that disturbs information in the electric wire. And we know the electromagnetic version of that effect.  

Maybe other fundamental forces (gravity and weak and strong nuclear forces or interactions) can have a similar effect. But nobody has seen the gravitational Hall effect yet.  

The electromagnetic tunnels or electromagnetic wormholes their radiation, or, wave movement traveling in one direction can make it possible for particles inside it can travel faster than the speed of light outside that beam. When that beam ends particle's speed decreases, and it sends an energy burst to the field around it. 

If that particle is some kind of gluon or small and very high-energy boson. It's possible that we cannot see that particle or its radiation. If radiation has extremely short or extremely long wavelengths and its pulse frequency is very high that makes it hard to see that particle or its radiation. In the case of a black hole radiation that comes out from a black hole or its material disk can cover those particles under their shine. 

The virtual crossing at the speed of light is also possible. That means the radiation. That comes out from the black hole impacts particles that fall into the event horizon. Radiation or wave movement is the last thing that can travel out from the black hole. That radiation can hit particles that fall to the event horizon. 

In the black hole's plasma layer ions and anions orbit the black hole along with free electrons and other particles. In that high-energy area particles with positive and negative polarity impact together. The high-energy area around black holes can involve things like long-term gluons and other bosons. Those particles can impact together. And they can send radiation whose wavelength is unknown. 


https://scitechdaily.com/faster-than-light-how-x-rays-unravel-mysteries-of-black-hole-jets/


https://en.wikipedia.org/wiki/Alcubierre_drive


https://en.wikipedia.org/wiki/Cherenkov_radiation


https://en.wikipedia.org/wiki/Fundamental_interaction


Monday, October 28, 2024

Skyrmions and quantum entanglements can be the new tools for quantum technology.

"Researchers at Berkeley Lab have advanced the understanding of magnetic skyrmions by developing techniques to image their 3D structures."  (ScitechDaily, Unlocking the 3D Spin Secrets of Magnetic Skyrmions To Power Future Electronics)

"These nanoscale objects show promise for revolutionizing microelectronics through enhanced data storage capabilities and reduced energy consumption" (ScitechDaily, Unlocking the 3D Spin Secrets of Magnetic Skyrmions To Power Future Electronics)

The ability to store data means the ability to transport data. 

Skyrmions are interesting things. Some people believe that the skyrmion or the donut-shaped electromagnetic fields are behind the event, called ball-lightning. The idea is that the strong skyrmion starts to rotate around the axle. That causes a similar effect as the coin that rotates very fast around its axle. The fast movement makes the skyrmion look like the ball. 

In some ideas, the skyrmion, or skyrmion row can form the tractor beam. The idea is that the system aims laser ray in the middle of the energy tornado. That thing makes the object higher energy. The outside energy channel closes the object inside it. 


"A 3D reconstruction of a skyrmion derived from X-ray images. Credit: Berkeley Lab" (ScitechDaily, Unlocking the 3D Spin Secrets of Magnetic Skyrmions To Power Future Electronics)

And if there is a lower energy layer on the other side of the energy tornado that thing pulls an object against it. There must be a higher energy point at the front of the object and if the energy level is lower behind the object. That causes an effect where the lower energy part pulls the object in the energy tornado. 

The system can benefit skyrmions in that tractor beam. The skyrmions can be used to isolate the channel from outside effects. And it can also make it possible to create a higher energy point at the front of the pulling energy channel. That thing can pull the qubit into the right point in the quantum computer. 


Skyrmions and quantum entanglements are tools that can change networks and data storage.



"Researchers at SJTU have developed a novel method for broadband frequency conversion, enhancing data transfer and quantum networks through improved optical processing. Credit: SciTechDaily.com" (ScitechDaily, New Method Revolutionizes Quantum Information Transfer Across Wavelengths)

The skyrmion that travels in the quantum computer can also act as a qubit. The laser beam or quantum entanglement can be used to control the direction where that thing travels. 

The problem with long-distance quantum entanglement is that. The quantum entanglement must travel data through the wave movement. That wave movement destroys and disturbs the string that travels between superpositioned particles The skyrmion that is the donut-shaped electromagnetic field can be the tool that protects data in the quantum entanglement. The skyrmion is the thing that can store data itself. And that makes it an interesting tool for data storage. 

The quantum system can store a copy of the data to the skyrmion. And then the quantum system can compare data that traveled in quantum entanglement and skyrmion. The skyrmion can travel around the quantum entanglement. And because that system uses two data channels. It's less vulnerable to some outside disturbances. The ability to store information makes it possible to transport it. 


https://scitechdaily.com/new-method-revolutionizes-quantum-information-transfer-across-wavelengths/


https://scitechdaily.com/unlocking-the-3d-spin-secrets-of-magnetic-skyrmions-to-power-future-electronics/

Saturday, October 26, 2024

Cosmic inflation


"From a region of space as small as can be imagined (all the way down to the Planck scale), cosmological inflation causes space to expand exponentially: relentlessly doubling and doubling again with each tiny fraction-of-a-second that elapses. Although this empties the Universe and stretches it flat, it also contains quantum fluctuations superimposed atop it: fluctuations that will later provide the seeds for cosmic structure within our own Universe. What happened before the final ~10^-32 seconds of inflation, including the question of whether inflation arose from a singular state before it, not only isn't known, but may be fundamentally unknowable." (BigThink, Ask Ethan: What’s the deal with cosmic inflation and the Big Bang?)

The universe requires cosmic inflation. Cosmic inflation releases energy. That was once bound to material and black holes. So, we can say that cosmic inflation keeps the energy moving. 

The key element of modern cosmology is that the Big Bang released all energy and material into its entirety. We call that entirety "the universe". All particles bound energy from space. Or they roll wave movement to the ball-shaped structure. The free energy is the thing that makes reactions in the universe possible. When energy takes particle form it is bound to the structure. 

The interaction between the particle and its environment determines the length of the particle's existence. If the particle's energy level is very high. Energy travels fast to its environment. And that destroys the particle. 

The idea of cosmic inflation is simple. If the space expands. But if there are no more particles or energy from outside the space expands if we compare it with material and energy. So there is more space in comparison to particles. 

When the universe expands its energy level turns lower. That means the energy always travels out from the material. Or, particles release energy that they bound a long time ago in their structure. 

The expansion of the universe causes the amount of matter and energy relative to space to decrease. The universe is like a balloon in a vacuum. When energy and material travel out from the Universe that makes it lighter. 


"As a balloon inflates, any coins glued to its surface will appear to recede away from one another, with “more distant” coins receding more rapidly than the less distant ones. Any light will redshift, as its wavelength ‘stretches’ to longer values as the balloon’s fabric expands. This visualization solidly explains cosmological redshift within the context of the expanding Universe. If the Universe is expanding today, that implies a past where it was smaller, hotter, denser, and more uniform: leading to the picture of the hot Big Bang." (BigThink, Ask Ethan: What’s the deal with cosmic inflation and the Big Bang?)


"There is a large suite of scientific evidence that supports the expanding Universe and the Big Bang. At every moment throughout our cosmic history for the first several billion years, the expansion rate and the total energy density balanced precisely, enabling our Universe to persist and form complex structures. Today, dark energy dominates the Universe, while early on, prior to the onset of the hot Big Bang, a phase of cosmological inflation occurred, preceding it and setting it up." (BigThink, Ask Ethan: What’s the deal with cosmic inflation and the Big Bang?)

The universe loses its energy and material into the space around it. Material is one form of energy. Particles are packed wave movement that we call energy. Sometimes that is called outer border inflation. There is also one other inflation. When black holes pull energy inside them, that means energy that travels to black holes is out from the universe and its interactions. So the black holes cause an effect that we can call inner inflation. 

When things like atoms form in big stars. That means the star creates a fusion that combines light atoms into a new element. When elementary particles form in the young universe they bound energy into their structures. When the Schwinger effect or wave-particle duality forms elementary particles it rolls wave movement into the ball-shaped structures. That wave movement or energy was away from the energy interaction. There was limited energy in the universe. Because all energy existed in the universe, that meant that there couldn't be an unlimited number of elementary particles. 

If energy or or wave movement would be like water we might simply say that there is a smaller energy mass and smaller number of particles in the modern universe than in the young universe. Some of those particles flew away from the universe and turned back into wave movement. Some of them are in black holes. 

They release black when those black holes vaporize. Black holes take energy and material in them. And that means there is a lower number of particles and a lower free energy level in the universe. Cosmic inflation causes a thing that we can call quantum vaporization. 

Because the energy level in the universe decreases all the time energy travels out from material or particles all the time. This thing means that cosmic inflation causes material vaporization where it turns back. To energy or wave movement. Black holes are also vaporizing. The black hole sends energy waves all the time into the universe. 

When the universe expands black holes are losing energy. The expansion causes the material disk around the black hole to jump outside. That means there can form a small energy vacuum between a black hole and its material disk. That effect rips energy out from the layer that is at the front of the event horizon. 

The material disk around the black hole is the thing that pumps energy into the black hole. If a black hole travels to the cosmic vacuum energy starts to travel out from it. 


https://bigthink.com/starts-with-a-bang/ask-ethan-cosmic-inflation-big-bang/

Saturday, October 19, 2024

The time is almost like a dimension.


"Having your camera anticipate the motion of objects through time is just one practical application of the idea of time-as-a-dimension. For any set of conditions that will be recorded throughout time, it’s plausible to predict when a certain set of spatial conditions (including position and velocity) will arise, with multiple possible solutions being admissible for both the past and future." (BigThink, Time: Yes, it’s a dimension, but no, it’s not like space)


The light cone above this text introduces how information focuses on a certain point. The light cone can introduce the behavior of time in 3D spacetime. Time is like a fourth dimension, the flow that takes energy out from particles. Sometimes somebody said that time is like a string that pulls energy out from the quantum fields. Time is like dimension, but it's not like space. 

Sometimes, somebody introduces that the time is like the string group that travels between two layers. Those strings travel through each particle in the universe. If those strings travel from the higher energy layer to the lower energy layer, that thing acts like a thermal pump. That thermal pump pulls energy out from particles. And when particles release their energy they lose their weight or mass. In this text, I use the words particle and object for the same thing. 

When we think about the black holes and their relationship with space-time. We might realize why black holes are in the past. When black holes pull energy and material into it that material. And radiation, or wave movement forms the spiral structure around that object. Thar spiral or material disk denies the black hole sending energy out from it because time, or some shape of the time is energy. When energy flows to an object that thing turns younger. 

When the energy level of the particle grows its size turns smaller. That thing can be explained as some kind of theoretical string that nobody has seen yet travels through the particle and its quantum field. The string pulls energy out from the inside of the particle and makes its quantum field or shell more high energy. 




"An example of a light cone, the three-dimensional surface of all possible light rays arriving at and departing from a point in spacetime. The more you move through space, the less you move through time, and vice versa. Only things contained within your past light-cone can affect you today; only things contained within your future light-cone can be perceived by you in the future. This illustrates flat Minkowski space, rather than the curved space of general relativity." (BigThink, Time: Yes, it’s a dimension, but no, it’s not like space)

That means the particle size turns smaller. The outside energy field falls to the empty space around the particle. That hypothetical string rolls the quantum field through the particle. That transports energy to that field. And if the energy flow to the particle stops that thing causes that energy to start to travel out from it very fast. If that energy flow starts from inside the particle. That destroys its structure. 

Because things like fast speed load energy into it. Particles turn younger at a very high speed. Or actually, they age slower when their speed is very high. The particle itself can be in a standing location if the ios or electromagnetic field pumps energy into it. The impact between particles and the field around them is a thing that pumps energy to the particle. When energy travels into particles it turns younger. And when energy travels out from particles it turns older. 

The thing that makes black holes so interesting is this: The whirl or spiral around a black hole expands all the time. That means it will pack more and more energy into that particle. That means the energy level in a black hole can turn higher. And energy level is the mass of the object. 



"The displacement between any two points in three-dimensional space, such as the origin and point P shown here, is equal to the square root of the sum of the squares of the distance differences in each of the three (x, y, and z) directions. A mathematical expression describing that overall displacement, d, is given by the equation d = √(x² + y² + z²)."  (BigThink, Time: Yes, it’s a dimension, but no, it’s not like space)

When the energy level in an object rises its mass rises. When escaping velocity on its shell is the same as the speed of light the time stops. A particle or object reaches energy stability where it releases as much energy as it gets. When a particle or object gets more energy than it releases it will turn younger. 

This means that the particle or the object starts to travel backward in time. The high mass makes the deep pothole into the spacetime. This means that the black hole hangs at a certain distance below or behind the current moment. The energy of the universe decreases all the time. But the size of the whirl increases.  

If that whirl is lost energy starts to travel out from the black hole. That thing causes the fast vaporization of the black hole. The black hole vaporizes because the universe expands. That means the whirl around the black hole will be separated from the event horizon, the point where escaping velocity reaches the speed of light. 

When that happens the black hole loses its weight. It cannot get that mass back, because the universe expands and an interaction with black holes and the Higgs field turns weaker. The Higgs field turns weaker all the time. We can see that as a decrease in the temperature in the universe. 

https://bigthink.com/starts-with-a-bang/time-yes-dimension-not-like-space/


Tuesday, September 19, 2023

Dark photons can explain dark matter.

  Dark photons can explain dark matter. 


A dark photon, anti-photon, or negative photon is a theoretical particle that is opposite to a photon. A regular or positive photon is a visible particle that travels at light speed. And that regular photon is the thing that transports information in the universe. The photon speed is the same as the speed of light. And that means photons have an energy stability with their environment. 

If we think that a photon is like a regular particle it has no mass, because energy will not travel between a photon and its environment. Photon will get all its energy back, and the thing that makes it interesting is that it should recycle energy through it. The photon will not get rid of its quantum field. When it releases its energy it will get new energy back. And that means the photon cannot slow its speed. So if the photon has no mass that means it slows. And that means it will not photon anymore after it slows its speed. 

The thing, that makes hypothetical dark photons dark is that quantum fields travel in into that particle. The reason why dark photons cannot turn back to visible or white photons is this: there are lots more dark photons than visible photons. And when the energy level in a dark photon rises it sends it into the other dark photons. Dark photon sends that energy into particles. They have even lower energy levels than dark photons. 

"A global team of scientists has delved deeper into understanding the complex nature of dark matter, which comprises a staggering 84% of the universe’s matter content. Their focus has been on the ‘dark photon’, a theoretical particle that might bridge the gap between the elusive dark sector and regular matter." (ScitechDaily.com/Dark Photons: The Key to Unraveling the Dark Matter Mystery?)


So dark photon would have a similar role between the second and third dimension as white photon has between the third- and the fourth dimension. Dimensions are energy levels. And that means photons could transmit energy from the fourth dimension to the third dimension which is at the lower energy level. The reason for that is this. If there is a particle with the same oscillation in a lower energy level energy travels from a higher energy level to a lower energy level. 

And that is the reason why we cannot see the second dimension. The sign from higher energy universes could be gravitational radiation. The size of particles in a higher energy universe or the fourth dimension would be so small, that we cannot detect that radiation. 

The thing that makes the mass to dark photon is the low energy level of that particle. Because quantum fields travel in those particles. that makes a very weak pulling effect. But the large mass of those photons makes that gravitational effect strong. 

The dark photon is the photon. That is at a lower energy level than other photons. The theory of dark photons goes like this: The photons are the particles between the fourth and third dimensions. The dark photons are particles between the second and third dimensions. So the thing, that makes a hypothetical dark photon dark is that quantum fields are traveling into it. If energy travels to some particle without echo that makes the particle invisible. 


https://scitechdaily.com/dark-photons-the-key-to-unraveling-the-dark-matter-mystery/

Thursday, September 7, 2023

There is no "nothing" in the quantum world.

   There is no "nothing" in the quantum world. 

The bubble theory goes like this. All material and quantum fields are one kind of bubble. And everywhere in the universe are quantum fields. Those quantum fields transport information, and there could be short and long-term vacuums or voids in those fields. When some of those voids collapse the quantum wave travels from the shell of that bubble into the middle of it. There that energy forms a standing wave and jumps back. 

That thing can explain why particles can form from emptiness. The particle is like a standing wave or power field in that quantum foam. In that model, the falling bubble in quantum foam can involve "sub foam". And then the outcoming quantum field or quantum foam just tries to press that bubble in. In that case, the pressure wave will lock in a certain position. 

The energy that comes outside the particle cannot press the internal energy or waves of a particle at one point. The ability to reach energy minimum causes a situation. Where energy travels back and forth in the border of that particle. When the bubble that we call a "particle" gets a lower energy level than the outside quantum field that causes a situation where that back and forth traveling energy locks the particle or bubble in its form. 

So could that interaction explain dark energy? The quantum foam would be the thing that interacts with all energy sources. And that thing could be one of the reasons why there is too much energy in the universe. 

In visions, there is a state of material called quantum foam. The density of quantum foam determines if we see that thing as wave movement or particles. In the case that material or elementary particles are like whisk-looking structures that spin very fast. Those strings that form the structure that we see as quarks or leptons are quantum lightning. 




So could that interaction explain dark energy? The quantum foam would be the thing that interacts with all energy sources. And that thing could be one of the reasons why there is too much energy in the universe. 

In visions, there is a state of material called quantum foam. The density of quantum foam determines if we see that thing as wave movement or particles. In the case that material or elementary particles are like whisk-looking structures that spin very fast. Those strings that form the structure that we see as quarks or leptons are quantum lightning. 

And there is the possibility that these kinds of things are one form of quantum foam. So when information travels somewhere the wave movement is a denser area in this quantum foam. And if there is some kind of empty area like Boötes void in the universe that thing can delete information that travels through those cosmic voids. 

We can think of information as the string that travels through the Boötes void, and when that string comes from the regular quantum foam to the low dense or empty point in that cosmic void the vacuum pulls it forward. That can cause a situation where the gravitational effect from backward pulls that string straight. 

So that thing is the extreme version of redshift. Because that quantum foam doesn't cause resistance the superstring starts to travel forward with extremely high speed. And then that extreme redshift pulls that string straight. The information cannot vanish. But it can be decrypted in a form that we cannot recognize it. 

In some visions, some kind of bubbles or miniature or quantum versions of Boötes void caused the famous Muon G-2 anomaly in Fermilab. Some kind of bubbles in quantum foam formed the small quantum vacuum that affected Muon's trajectories. There is a vision that those quantum voids pushed that quantum foam away from some areas. And maybe that thing explains the fifth force. 

The quantum foam explains why crossing the speed of light is so difficult. That quantum foam forms a similar quantum field as air molecules form. And that thing causes a thing called a light wall. The particle cannot press itself through the quantum foam because energy travels out from it at a critical moment. 


https://bigthink.com/hard-science/muon-g-2-new-physics/


https://bigthink.com/hard-science/nothing-exist-quantum-foam/


https://en.wikipedia.org/wiki/Bo%C3%B6tes_Void

Thursday, April 7, 2022

Black holes and the shape of the universe




Black holes and the shape of the universe are the things that are causing discussion. The black hole is the place where time travels backward because energy travels to the center of the black hole. The black hole is in the middle of the whirl of the material. And that means the whirl continues its movement behind the event horizon. So the spiral shape whirl that we see in galaxies continues its travel in the form of a spiral inside the black hole. 

So the black holes would be the brilliant place for the anti-universe where time moves backward. But there is one requirement. And that thing is that the material can have the shape of order. The material cannot form in chaos. But material always attempts to reach the order. 

And there is a small possibility that the whirl inside the black hole forms the other universes. The fact is that that other universe would be the place where the energy that travels to the center of the black hole keeps material young until the black hole is vaporized. 






The shape of the universe determines the ultimate fate of the universe. If the shape of the universe is a ball or spheric. It's closed. And it faces its fate in Big Crunch. Otherwise, the fate of the universe is big silence. 

The universe's geometrical shape is important when we try to think about its ultimate fate. The ball-shaped universe is the only possibility that the end of the universe will be the Big Crash. If that thing is possible the phoenix universe is true. Only if the universe is positive curvature it's closed. 


If Ω = 1, the universe is flat.

If Ω > 1, there is positive curvature or spheric or ball-shaped

If Ω < 1 there is negative curvature in the universe. 

The fact is that the black hole is like a universe inside the universe. That thing means that the black hole is like the spheric universe inside a larger universe. So, the universe has the matryoshka model. There might be internal structures inside the larger structure that we call the universe that we cannot ever see. 

So did the universe begin its life as the flat universe and then it would take the hyperbolic shape and when the energy level of the universe decreases enough the universe will get the shape of a sphere. 

The local geometry of the universe is determined by whether the density parameter Ω is greater than, less than, or equal to 1.

The local geometry of the universe is determined by whether the density parameter Ω is greater than, less than, or equal to 1.





Image above: From top to bottom: a spherical universe with Ω > 1, a hyperbolic universe with Ω < 1, and a flat universe with Ω = 1. These depictions of two-dimensional surfaces are merely easily visualizable analogs to the 3-dimensional structure of (local) space. (Wikipedia, Shape of the universe)

If we think that the geometry of the universe is stable. That requires that the relativity between energy levels in space, material, and gravitation is stable. But we can speculate the possibility that the universe began its career as a quantum system in which energy level was extremely high. But when the energy level relativity to gravitational force decreases. 

That thing means that gravitation starts to win. That means the advancement of the universe might consist of all three possible shapes. The beginning of the universe was a layer-shaped structure but when the universe is cooling or its energy level is decreasing it turns ball-shaped. 

The universe loses lots of energy outside it. The wave movement and the most out particles of the universe should travel faster than they would travel inside the universe. But practically things like gravitation affect those things. Anyway, the universe loses energy and material all the time to the emptiness that is surrounding it. But also radiation inside the universe turns weaker. And that affects the relation between gravitation the mass of the universe, and energy. 

The hypothetical gravitational hill in the middle of a flat universe can pull the flat universe to spherical form. And it's possible, that this thing can happen through the hyperbolic universe. So are those three possible geometrical shapes of the universe also the shapes that are following each other in the history of the universe?

One of the most interesting models there is a large "pothole" or "hill" in the middle of the layer-shaped universe. So when the radiation that is released when the universe is expanding turns too weak that gravitational point will pull the universe to the spheric shape. 

The origin of the idea of the gravitational hill is coming from the Big Bang theory. The part of the material that was released in the Big Bang fell back into the giant black hole. When the power of the energy that expands the universe is decreasing to a level that is low enough. That giant black hole would pull the outer core of the universe to the spheric form. 

The existence of that black hole is purely hypothetical. But when the material was released from the Big Bang. The energy level of that explosion was extremely high. But it was quite similar to a supernova explosion. 

There was one difference between supernovas and the big bang. In the young universe was no quantum field outside that expanding quantum bubble. But energy travels also backward in the expanding quark-gluon plasma. And that energy could form a black hole. 

That black hole will pull more particles into it. And it expanded. Until there was formed another black hole. That can make superpositions with it. That thing was the beginning of the forming of the universe. 


https://en.wikipedia.org/wiki/Shape_of_the_universe


https://en.wikipedia.org/wiki/Ultimate_fate_of_the_universe

Saturday, November 6, 2021

The problem with the wormhole is what its looks like?



When we are thinking about the form of the Einstein-Rose bridge, we can ask is it a single form. In some models, the mythical Einstein-Rose bridge is only the stretched black hole. 

Or is it a series of quantum-size black holes? The first version of this theorem is that the radio ray that travels in the magnetic field will turn to a black hole. The form of this mythical structure is the extremely powerful electromagnetic field. That powerful electromagnetic field forms in the electromagnetic wormhole. 

And the electromagnetic channel is pressing the electromagnetic fields inside it. That extremely thin and thick electromagnetic field forms the tunnel through space and time. If we are thinking about the energy channels like magnetic tunnels through space. 

There is the possibility that magnetic stress along with the high speed is stopping time in the particles. In that case, the time is stopped only in particles that are traveling in the electromagnetic tunnel. So maybe the wormhole is a virtual phenomenon.

In that case, the hypothesis is that. Radiation of the black hole causes that some of the particles are starting to superposition. When the first particles are starting to form the black hole. 

That black hole starts to superposition itself to other particles. And the needed energy for that process is coming from the black hole that is the end of that channel.  So they are starting to make quantum entanglements through the magnetic channel. 


Is wormhole the Tipler cylinder? The ion whirl where ions are whirling around magnetic channel with the speed of light?


The magnetic whirl can create the Tipler cylinder. If the particle would travel in the Tipler cylinder where the core is rotating with the speed of light with extremely high speed that thing allows the virtual crossing of the speed of light. The fast-rotating ions would stop or dilate time in that form. 

In some other versions, the whirling ions are turning the magnetic channel to the Tipler cylinder. In that magnetic channel which is surrounding the whirling ions the time would stop. And there is the possibility that the particle would travel through that channel and return to the moment where it began its journey if the speed of the particle is high enough. 


Is the wormhole the chains of the quantum-size black holes? 


In another version, the wormhole is a series of quantum-size black holes. In that version extremely small black holes are forming in the radiation of the black holes.  And they are making chains through the universe. 

When the extremely small black holes are forming they are superpositioning to the particles near them. And the reason for that is that the radiation from those black holes turns the other particles into black holes. 

The thing is that the black holes that are in the electromagnetic channel are turning to each other. Those quantum black holes are forming a series of superpositioned and entangled objects. And those superpositioned and entangled black holes are creating the energy bridge between two black holes. 

Or maybe the oscillation of two black holes is making it possible that there is forming the quantum channel between those black holes that are oscillating with the same frequency. The thing is that at the first there is forming an energy channel between two black holes. Then that energy channel starts to press the particles inside it. 


https://www.space.com/20881-wormholes.html


https://en.wikipedia.org/wiki/Tipler_cylinder


https://thoughtsaboutsuperpositions.blogspot.com/

Thursday, November 4, 2021

What is the origin of dark energy?



Is dark energy wave movement traveling from the universe to the area around it? If that thing is true the dark energy has not existed in the way as people normally think it exists. It's the energy that exists only at the edge of the universe. That energy travels outside the universe and makes it lighter. 

The thing is that energy cannot form from emptiness. There must be some kind of particles that are forming the wave movement. So is the form of the dark energy negative. Negative energy means energy that travels away from the higher energetic particles. 

The main question of dark energy is: is it positive or negative energy? If the dark energy is negative. That means there is the possibility that it is the energy that travels outside the universe. Energy travels from the high energetic area to the lower energetic area. 

And that means the dark energy could be an energy that travels outside the universe. The idea is that the universe is a higher energetic area than the space around it. So energy travels away from the universe. And that thing means that the universe is turning lighter. 

One of the ideas to explain the origin of dark energy is that its origin is in gravitation quantum origins. The idea of this theory is that inside atoms and even protons and neutrons are empty places. The protons and neutrons are hadrons. Three quarks are forming those particles along with some other small elementary particles.

And there are small holes in those particles. So there is the possibility that the radiation has an extremely short wavelength and especially the short height of those waves can travel through protons and neutrons. In this theorem, the origin of the dark energy is in the oscillation of the subatomic particles. The thing is that the size of those particles is smaller than quarks. And that means a large part of the radiation that those particles are sending could travel across atoms benefiting the empty points between quarks. 

The idea of the quantum origin of gravitation is simple. The idea is that gravitation is wave movement like light. The question is does gravitation push or does it pull particles. If we think that gravitational waves are the energy that is traveling between quantum fields around atoms. There is the possibility that gravitation is an energy that affects only the quantum fields around the atom. 


What if there are large groups of free particles like quarks outside the edge of the universe? That means those particles will pull the universe behind them. 


So in this version of the theory. The gravitation would rise the force of the quantum fields in an atom. But what is the quantum field where the gravitation affects? Is it the quantum field around an atom? Or the quantum field around electrons, protons, and neutrons? The idea is that the origin of the gravitation is in the gluons that are traveling between quarks. When the gluon hits to quark it sends the wave that moves through the atom. Because that wave movement does not affect particles or that effect is extremely weak. 

That means that wave movement is invisible. And one explanation for the effect of dark energy. Is that it affects the quantum fields that are surrounding the universe. The universe is like the giant shock wave and that means there could be clouds of free quarks around the visible universe. And when dark energy hits those particles they are pulling the universe outside. 


The main question about gravitation is, is gravitation pull, or does it push objects? 


The idea is that the gravitational wave is the higher energetic area in the universe. And the thing that while the energy wave is traveling in the universe. Those particles would deliver their extra energy to the particles behind that energy wave. That wave movement could be gravitation. 

The idea of the pushing effect of the gravitation is coming from the gravitational waves. The gravitational waves travel in the universe. And the idea of the pushing model of gravitation is that when gravitational waves are moving through the particles they are turning lower energetic than particles that are inside the gravitational waves. In that version, the energy would travel backward from gravitational waves. 

So when the gravitational wave will raise the energy level of the particles. That wave is followed lower energetic area than another universe is. And that means. The wave movement that comes from those particles in the gravitational waves is hitting the particles that are behind it that wave movement would push particles in the opposite direction of the gravitational wave. 


https://www.scientificamerican.com/article/could-gravitys-quantum-origins-explain-dark-energy/


https://en.wikipedia.org/wiki/Gravitational_wave


https://en.wikipedia.org/wiki/Hadron

The expansion of the universe directly impacts the growth of black holes.



Black holes grow along with the expansion of the universe. And there could be some reason for that thing. The first in the introduction for that phenomenon is that some radiation like Hawking radiation has something to do with that thing. 


X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X


If Black holes grow along with the expansion of the universe there must be some connection with the growth of black holes. And the expansion of the universe.


The key question is: Is the thing that causes the growth of the black holes pulling or pushing? We know that there is a connection between the expansion of the universe and the growth of black holes.


1) Does the radiation that comes from black holes push the edge of the visible universe away?


2) Or does the freezing or the decreasing the energy level of the quantum fields of the universe cause that quantum fields cannot limit the size of the black holes. 


X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X


Is the radiation of black holes pushing the edge of the universe away? And cause expansion of the universe?


So black holes are pushing the edge of the universe away. And the second one of that there is something that pulls black holes larger when the size of the visible universe grows. If the first choice is right, that thing means that when the black holes are growing their edge is closing the edge of the universe. And then some kind of radiation that comes from the black hole is interacting with the edge of the visible universe. 

And that radiation that can be the Hawking radiation will interact with the edge of the visible universe pushing it away. So does that radiation affect straight to visible material or does that thing affect the dark matter or some unknown particles ahead of the edge of the visible universe? 

The thing is that the black holes are also pulling dark matter inside them. And then the dark matter sends invisible radiation. To the particles that are at the edge of the visible universe. 

Or maybe the gravitational waves are pushing particles away from the center of the universe. There is the theory that gravitation is the wave movement that can push particles away. If the curve of the wave movement turned straight. That means the speed of the wave movement can be enormous. But the thing is that nobody has ever seen straight wave movement. 


But what if the expansion of the universe pulls black holes larger? 


In that situation the answer for the connection between the expansion of the universe. And the growth of black holes. Is that the expansion of the universe pulls black holes bigger. The explanation for this thing. Is that while the universe expands the quantum fields inside the universe are turning weaker. 

While the size of the universe is growing the energy level inside that ball what we call the universe is turning lower. That thing means. That is the force of the quantum fields. That is limiting the growth of the black holes is turning weaker. When the force of those quantum fields is lowing the size of black holes is growing. 

And that thing causes an interesting idea of the ultimate fate of the universe. Maybe when the power of the quantum fields is low enough that thing causes the explosion of the billions of black holes. And that explosion releases energy and wave movement that causes that the wave movement turns into particles. 


https://phys.org/news/2021-11-expansion-universe-impacts-black-hole.html


https://en.wikipedia.org/wiki/Expansion_of_the_universe



Thursday, November 15, 2018

The inventions of free energy by Nikola Tesla

https://gamesandtehories.blogspot.com/

Kimmo Huosionmaa


When we are thinking about one of the most incredible genius masterminds in the World, the man, whose name was Nikola Tesla, we might think that the inventions, what this man made are somehow impossible, but then we must realize, that every one of his inventions is conducting with electromagnetism. And the induction motor would give use great vision, what the creation of free energy by using Earth as the power source would mean. In this case, Tesla would only increase the rotating speed of nucleus of Earth and that would be made incredible strength to the magnet field of Earth.

This could be a fascinating idea, but the changing the power of the magnetic field of our planet can have a negative influence on nature. But Tesla could do that thing by using extremely powerful magnets, what works like the stators of the induction motor. The thing, what makes electricity to those magnets would be capillary motors, the capillary pipes would put in the deep sea, and the water what rises thru that tube would conduct thru the turbine. That kind of things is causing the talking about using fossil fuel. Those systems can separate electrolytic way Hydrogen from Oxygen, what is connected in the water molecule, but easy to separate by using electricity, and that gas can conduct to the tubes, what are used to delivering natural gas to the customers.

The idea of the using atmosphere to conducting electricity is, of course, incredible, and it could be done by using Tesla-cols. The atmosphere would be ionized by conducting the electricity to it, and this thing caused the most incredible idea of the world. The thing made possible to create the protective field around some target. The Tesla-coils allows to target the lightning, what travels thru atmospheric plasma, and it would cause the destruction of all electric equipment.

The second thing, what this man invented was the ice-hockey size thing, what would cause Earthquakes. This thing might be done by using radio waves or something like that and make the bubble below the Lithosphere. That thing might cause the collapse of the rocky layer, or the other thing would be to use the resonance for causing the synthetic earthquake. The idea would be that to the rock of the Earth would send the soundwaves, what would make it resonate, and this could cause Earthquakes. This kind of sound could send by using Sonar-system or loudspeaker, and it could be devastating for the building.

Tuesday, July 10, 2018

The gravity energy and its use in power supply

Picture I

http://crisisofdemocracticstates.blogspot.com/p/the-gravity-energy-and-its-use-in-power.html

Kimmo Huosionmaa

We are using gravity energy currently in the form of water power, but when we are thinking about the use of the pure gravitation as an energy supply, there are three possibilities to make that thing real. They might look simple, but there are many technical problems with their practical solutions.


The motive for this kind of operation would be, that the And some of those solutions are extreme unpractical, and they would ever take in use. Those things need so large-scale technology or traveling to other planets, that they are not nowadays technology at all, but in theory, the gravitation engines can give the civilization opportunity to continue it live without their sun after it has been detonated as the supernova.


So this writing is purely hypothetical and its purpose is to think about the technology, what would be used in that kind of power supply. One motive for large-scale projects would be that the central star of the solar system would start to become unstable. And this would make the civilization to build the gravity power. And here are those three ways to use the power of gravitation. Here I'm not going to write about water power, because this writing is meant for hypothetical thinking about the gravity energy.

1. Tunnel thru the planet

There is a possibility to drill the tunnel thru some planet, what have not the liquid nucleus. In that theoretical operation would be used the laser-drill, what allows to make the extremely deep hole.   If the planet would have solid lithosphere and it would have the possibility to drill the tunnel thru the planet, and then install the generator in that structure. The drill would look like the cylinder, and it could land to the surface of that planet, and then it must just begin to use its laser.


After that in this tunnel would be dropped to the particle or particles, what would rotate the juniper and generator. This particle would travel inside this tunnel like Jojo, and it can rotate the generator by using the wire or another way would drop those particles on layers, what would cause the rotating of the generator. This might seem very simple, but there are many practical problems to make that kind of system.

2. Using the heat of dropping particles as an energy

The second one is so unpractical way to use gravity power, that it would be ever take in the real use. The technology is that thru the atmosphere would be dropped the particles, what would be getting heat in the process. Then those particles would drive to the boiler, what creates steam, that would conduct to the turbines.


This way to make gravity power system is very unpractical, and the power, that it can be made is so expensive, that even in theory it would not be used even in small-scale systems. Here we are seen, how in theory we can make something, what would work, but what is so unpractical, that it will make us laugh. There is a version of this kind of system, what would actually be used in some drones.


Those drones would be dropped into the atmosphere of some planet and the propels would start to create the electricity of the drones electric motors. The system would be used to explore the atmospheres of other planets like gas giants and Venus. Drones would not be larger than some toys, but their mission will be collecting the information from the planet's atmosphere. And they might also be used for the reconnaissance missions, where the satellite drops them to hurricanes or near military bases if their mission would be military intelligence.

3. Use the radiation, what is forming near Black Holes as an energy supply

The most fascinating way to use gravity energy will be using the transfer disc of the black holes as the energy supply. Those areas around the supermassive particles in the universe are the brightest thing, what astronomers have seen. And the energy would be collected with normal solar panels. But the problem is, that we have no black holes in our own solar system, and traveling to them is taking an extremely long time. That makes this version of the gravity power also theoretical.


But we could use gravity power if we could make the artificial black hole. The hypothetical gravity power plant would be the system, where the artificial black hole would be set in the ball-shaped chamber. This chamber could be covered with the silicon layer, what gives electricity, and sometimes the gas would be conducted in this chamber. Then it would send the radiation to the system. But if the ball would be damaged, and the black hole will be released to the atmosphere, could that destroy the entire planet, and that's the reason this system would not be tested in the atmosphere of Earth.


There is the possibility, that in someday we could make the electromagnetic black hole, what can be transferred in the spacecraft. The black hole can be forming, that way, there could be accelerators in the spacecraft, and then the support system will start to pump energy to that system by touching it with tongs, what transfers the energy to that hypothetical spacecraft. And then the spacecraft would use this thing as the energy supply. When we are discussing the UFO:s we can think that this kind of energy will be used in some kind of spacecraft. The size of the spacecraft would not be necessary big, and the size of the black hole would be smaller than golf-ball. But if that small black hole will release to the atmosphere, will the results be devastating. And this will make the hypothetical unknown spacecraft dangerous.

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