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Shadow of the gravity.



Gravity is like a shadow in atoms and subatomic structures. That shadow forms in the quantum field interaction around atoms and their internal structures. When the quantum field around particles oscillates it pulls a little bit from the Higgs field into it.  The idea is that a gravity wave is the energy ditch that travels in the Higgs field. The wave that follows the ditch can be long but low. 

And if the energy wave that follows this ditch is long and low, that makes an effect, that looks like a traveling energy ditch. When a particle drops in that energy ditch, it must release so much energy that it can jump out from the energy ditch. In that case, the energy level in the energy ditch turns higher, and the wave travels slower. 

The difference in energy levels at the top of the wave and the bottom of the ditch determines the power of this effect. Gravitation itself is hard to detect because energy travels into the ditch. When an energy wave or string travels into the energy ditch's bottom it releases its energy. The energy seems to hover between that energy string and the wave. The speed of the string slows, and then it melts with a wave. The energy that the string released is like a hum. 

And then the wave eats both of those things. The direction of the energy transfer determines if the observer can see the thing. In an energy ditch, the energy level is lower than its environment. That means energy travels to that ditch. The wave that follows the ditch is at a higher energy level than the environment. And that means that the observer can see the wave, but it cannot see the ditch ahead of the wave. 

In a real universe, multiple waves travel in different directions. Sometimes the waves cross and the only ditch will touch another wave. That pulls energy out from the wave. It's possible. That the wave, that follows the ditch will turn very low. And that forms a situation that looks traveling ditch. 

That means graviton is the particle, that forms when two gravity waves impact. That effect forms that, still hypothetical, particle in the crossing point of the gravity fields. In some models, the graviton is the energy ditch in the Higgs field. In that case, the graviton is invisible and impossible to see. 



Above: Sombrero model. The wimp should be so massive particle. That it just is too deep in the sombrero. If the ditch around the particle is too deep, we cannot see the particle. That means the energy vacuum around the weakly interacting massive particle or wimp makes it invisible because the energy hill where the particle is cannot turn higher than the edge of the energy ditch. 

Or actually, gravitation is the pothole at the front of the particle. The pothole pulls particles ahead. Same way the lower water level at the front of the wave pulls the wave forward. 

The energy can travel also into the atom's core from the electron shells. And also particles in atom cores send radiation or wave movement. A little bit of that energy is stored in subatomic particles' superstrings and quantum fields. That thing forms an energy shadow in the atom's nucleus. The thing that supports this model is that the energy level and the mass of objects interact same way.  

The energy shadow between particles causes a situation where an outcoming energy field starts to push particles and radiation into that shadow. That means gravitation is a field-effecting force. The field is like a river that pulls particles with it. 

The high-power energy field makes the energy shadow deeper. Same way large particles are massive or their gravity effect is strong because there is a deeper energy shadow in their core. The difference between energy levels in that energy shadow and outside energy fields determines how far the Higgs field starts to travel at that point. 

The reason why dense objects have powerful gravity fields is that there is a deep energy shadow in that particle. The difference between energy levels in that shadow and its environment determines how powerful gravitation can be. Around the black holes is a halo and material disks that pump energy into that object. The temperature in the halo is extremely powerful. And that increases the difference between energy levels in and out of the event horizon. 


https://scitechdaily.com/beyond-the-big-bang-decoding-dark-matter-and-cosmic-mysteries-with-gravitational-waves/

https://www.zmescience.com/science/higgs-boson-10-year/

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