Friday, December 23, 2022

The quantum rain.




Could this be the key to gravitational interaction? The image above this text portrays a neutron star. That image could also portray elementary particles like quarks. There is the possibility that the gravitational field is similar to a magnetic field. 

So the pulling side of the gravitational wave motion or gravitational effect that a fast-rotating particle pulls inside is the particle is only far larger than the pushing gravitational wave or antigravitational wave that travels out from the particle. The idea is that a whisk-looking quantum structure turns the quantum field to gravitation. 

The term quantum rain means that particles' energy level decreases. The reason for that is cosmic inflation. And all particles travel into an energy level that is minimum in our universe. That means the material travels to a two-dimensional form. 

The micro- or quantum gravitation can tell why gravitation is so weak. But the effect of the gravitation is long-range. The reason for quantum gravitation could be in the form of particles. 

If each elementary particle is like a whisk-looking hollow object where extremely small skyrmions or quantum strings are forming a series of hoops. That is orbiting the area where the energy level is very low. 

And that means. There is lots of energy that travels out of those skyrmions. But gravitation is forming when energy travels through holes between the skyrmions. So that means the internal structure of each particle is cold. 

Same way when icy rain is cold because energy travels to those water droplets gravitation waves travel in and out from material or particles. The shine of quantum skyrmions pushes other wave motions out from those skyrmions. 


1) Elementary particle

2) Laser-ray-looking structure

3) Energy


The elementary particles are acting like small thermal pumps that pull quantum fields through the core of the elementary particles. That energy will travel inside a quark or boson and then it forms the laser-ray-looking structure that transports energy out from that 

So if particles are quantum skyrmions that are rotating extremely fast speed.  That can tell why particles are pulling each other together.  

When those skyrmions of whisk-looking structure impact with quantum fields. They act like antennas. The skyrmions take that energy impact into their structure. Then that skyrmion or superstring acts like spring. It conducts most of the energy to the poles of that structure. 


Above: The Standard Model of elementary particles. 

But a little part of the energy travels inside the elementary particle. That energy forms the axle- or laser-ray-looking structure. When energy travels in that stick-looking structure. Inside the elementary particle. It pulls energy out from the particle's internal structure. 

The energy that travels away from the poles of the quark and that energy stick would be the anti-gravitation or pushing gravitation. The impact area of the energy stick that comes out from the particles would be very small if we want to compare that area with the pulling effect of that wave motion. 

That structure works like a small pump that moves energy out from the quantum field around the particle. So the energy that travels inside that small thermal pump is the thing, called gravitation. Why gravitation interacts over long distances? And why it doesn't have a pushing form? Maybe, the area of pushing gravitation is so small that pulling gravitation covers it. 

The reason for that is all particles act as an entirety. The pulling side has a larger layer than the pushing side. So that thing means that the larger area of the pulling gravitational effect causes. That the pulling effect is more dominating than the pushing effect because the pulling effect affects large areas in comparison with the pushing gravitational effect. 


https://www.businessinsider.com/standard-model-physics-master-equation-2017-6?r=US&IR=T

https://theconversation.com/au/topics/neutron-stars-1325

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

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

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

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