Showing posts with label graviton. Show all posts
Showing posts with label graviton. Show all posts

Monday, August 4, 2025

The new theory about the beginning of the universe.

 The new theory about the beginning of the universe. 


The new theory about the beginning of the universe requires the existence of gravitons. The mysterious graviton would be the answer to the beginning of the universe. If we find the graviton, we can make a model that supports the universe's origin in the Bose-Einstein graviton condensate. The universe’s beginning is explained as the G-field where gravitons were formed. Like all other particles, hypothetical gravitons are condensation points in the G-, or gravity field. In that model, the G-field is gravitational radiation that formed all other fields. And all other quantum fields are formed in internal interactions of the G-field. Those particles that formed in the G-field act as tensors. They transmit radiation or wave movement in the same wavelength as their size. 

So, the particle’s diameter determines the wavelength of the radiation, or wave movement. That means particles that form in the G-field can turn the G-field into another wavelength. So, that tensor particle can turn the G-field into an electromagnetic field. When the particle's size grows, it increases the energy transfer speed that the particle brings out from the G-field. In that theory, there were no other fields than the G-field before the Big Bang. That means there was no resistance in other fields. And those fields start to expand. They harness energy from the G-fields, and that can be the beginning of the universe. 

Other quantum fields are the strong and weak nuclear forces. And electromagnetic interactions. All those interactions have wave and particle forms. 

And we can say that those fields form from the wave movement that gluons, W, Z, and photons send. Or a photon can itself turn into a wave movement. So the origin of the wave movement that forms some field is in some boson. The reason why we cannot see the field from the strong nuclear force, or strong nuclear interaction, is that the gluon is such a small particle that it sends such short-wavelength wave movement so often that it's hard to detect that radiation, or wave movement. 

That means graviton is a boson. Bosons transport a certain force or interaction. Graviton-boson transports gravitation. It sends so shortwave radiation that it’s hard to see. But there is a possibility that gravitons are not particles. It can be a hole in some energy field. And one of the most exciting models is that hypothetical tachyons, faster than light particles, form the graviton. Or the graviton is the hole that the tachyon leaves behind it. Those hypothetical tachyon particles will travel back in time. And they might behave like black holes. In that model, the photon is like a smoke ring that forms around the hole behind the tachyon. And electromagnetic fields try to fall into that hole. 

That is one model that can explain why we cannot see gravitons. Another explanation could be that the graviton is a particle that spins faster than light. And that makes it a so-called quantum-size black hole. So, could tachyon be the same as graviton? Only heaven knows. But if we think otherwise, we can model what the graviton might be. That graviton is the quantum dot that starts to vaporize. When those quantum dots vaporize, they act like ice acts in a room, when those ghost particles vaporize, energy from other quantum fields starts to fall to points. And that causes movement in quantum fields. 

Those gravitons can have antiparticles. That “antigraviton” would be a particle that works opposite to the graviton. The even more hypothetical anti-graviton would be a particle that pushes quantum fields away from it. Gravitation is a very weak force. And maybe the antigravitons are very rare particles. In that wild model, the annihilation between a graviton and a mirror-graviton can be a source of dark energy. But those things are not proven. They are only speculation. 


https://scitechdaily.com/rewriting-physics-textbooks-scientists-propose-a-bold-new-theory-about-the-universes-origins/


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



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


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


https://thatsthenatureoftime.blogspot.com/


Wednesday, June 18, 2025

Gravitons, photons, and string theory.



Above: A spiral galaxy is actually a material disk around a supermassive black hole. 


If a graviton is the black hole in the middle of a photon that thing is a small but very powerful particle. When we look at the black holes in the universe we can see that those phenomena pull material into them from extremely large areas. The Sagittarius A’s size is about the same as the solar system. But it forms a spiral galaxy around it. 

That means that if the photon is a structure that is formed around the quantum-size black hole, that means the quantum black hole could be the graviton, the missing gravitation transmitting particle. But that particle is extremely small if we compare it with a photon. In this model, the photon is an energy ring that locks that quantum black hole into its form. That means photons are the energy field that denies the quantum black hole explosion. 

Or if the superstring or string theory is true we can say that if a photon is lost. That pushes a black hole into that superstring. An energy field that falls behind it impacts the superstring. In string theory, superstrings form all particles and energy fields. Those strings can be like rings, or they can be very long lines. And that means those 2D strings form everything. 

The idea is that the hypothetical superstring that the photon surrounds acts like a thermal pump that puts energy flow away from that point. 





"A new theory, that explains how light and matter interact at the quantum level has enabled researchers to define for the first time the precise shape of a single photon. Credit: Dr. Benjamin Yuen" (ScitechDaily, Quantum Leap: Scientists Reveal the Shape of a Single Photon for the First Time)


The question is how can that thing form? The answer could be in the Kugelblitz black hole. The black hole can form from energy or from superstrings. The idea is that the photon that we see is an energy ring around the superstring. When the energy that comes out starts to push that string in that point, that makes energy move in and on that string. Superstring can be thinner than quark. But it can be as long as the diameter of the universe. So, when the energy level in that point starts to rise it puts energy to move out from that point. The rising energy level at that point puts energy moving faster at that superstring. 

That thing starts to pull energy out from that point so fast that all wave movement goes with that thing. In this model, the photon is the impact field around the superstring that cannot take all energy away from that point. The photon is the energy field that outcomes energy locks around the energy hill that makes energy move in the superstring. This means the black holes are like extremely powerful thermal pumps that make energy flow away from the point where they are so fast that quantum fields around them start to travel to that point with such high speed that light or any other wave movement cannot escape from that point. 

When we think that a photon is the ring-shaped energy field around some kind of superstring, the next question is how that superstring turns into a supermassive black hole. That happens when those superstrings are starting to tie around each other like a rope. That kind of thing can form extremely large black holes. But the requirement is that those structures must not let energy away from them. So maybe at least large-size Kugelblitz black holes cannot form in the modern universe. There is so much free space or surrounding quantum fields are so weak that the rope-shaped structure of superstrings will be broken. 

The black hole is in the interaction between it and its environment. Outcoming energy or quantum fields press that structure together. And in the young universe, those quantum fields were much stronger than in our universe. They pressed those superstrings together. And that means it's possible that in the very young universe the Kugelblitz black holes formed before material. That is one way to think about the most interesting phenomenon in the universe. Proving that thing requires proving string theory. And that is not an easy thing. 


https://scitechdaily.com/quantum-leap-scientists-reveal-the-shape-of-a-single-photon-for-the-first-time/


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


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



Friday, January 10, 2025

Graviton: the missing boson.

Graviton is a theoretical boson. The particle that should transport gravitation. But the problem is nobody ever proved or even nearly proved that strange thing. Gravity is one of the four fundamental interactions. All other fundamental interactions, electromagnetism, and weak and strong nuclear forces or interactions have their transportation particles. 

In this text, I sometimes call fundamental interaction "nuclear force"  But the missing is a graviton, the transportation or transmitting particle that should transport gravitation. But gravitation doesn't need graviton. 

Gravitation is wave movement. But there is one difference between other fundamental interactions. There seems to be no push effect. The gravity wave is like a ditch that travels in spacetime. So. When we think that way. The graviton somehow blinds energy into itself and aims it to some other structure. And that makes the field travel to the gravity center. 

That means. Maybe a graviton doesn't even exist in the form of a particle. In that model. The source of gravity could be in the strings that keep quarks in the forms. That we know as protons and neutrons. In that model whirl, there is the gluon, the transmitting particle of the strong nuclear force, or strong interaction. But can gluon be the graviton. That means: Gluon would be the chameleon particle. 

If gluon is the tensor, the connector that connects gravity and strong nuclear force. That would be the most fundamental thing in physics. The idea is gluon would be like a top. It collects energy from its equator and then aims it to a thin pike or string which explains the behavior of strong interaction. Because strong interaction or nuclear force is so thin beam. That explains its short-distance interaction. And gravitation is the field that travels to gluon. 

So, gluon could also be the source of a gravitational wave. The idea is that a particle pulls a field inside it. And sends it somewhere. That makes the field moving. 

The gravitation seems like something binds energy fields in it. Because something binds energy in it that makes fields like Higgs field travel to the gravity center. And we can ask can the gluon be the missing graviton? 

The strange behavior of gravity means that graviton can be something very different than we think. If we think that something in a material connects fields inside it, it's possible. That gravity has only waveform. The thing that supports this model is this. 

When the spin of the particle increases when the system pumps energy in it that particle forms a situation in which the particle binds energy in it. The energy or wave movement travels to that particle increasing its mass. Or when a particle binds more energy inside it its size grows. 

When the universe expands the difference between energy levels between the quantum field inside the particle and outside it. That expansion makes the quantum field fall into the particle. 

The particle can bind more energy from the Higgs field around it. When particles harness the energy their capacity to store energy increases. The energy makes the bubble-like structure around the particle. When a particle spins it acts like a dough whisk and collects energy inside it like a whisk collects dough. The particle itself is like a whisk. 

The energy inside the particle travels to that structure and sooner or later the particle moves that energy into the string that goes out from its spin axle or to the fourth dimension. When that energy transfer happens the particle or object sends gravity waves. 

It's possible. That the particle's fast spin denies that the energy fields cannot go inside it. The idea is that the field pressure around that particle keeps energy inside it. 

The outside fields keep the structure in its form. And when energy pumping ends energy inside the particle goes out. But if a graviton exists it can be simply so fast-spinning particle that seems slight. The thing that makes the field fall in particles can be the universe's expansion. That pulls particles larger. And that makes the quantum low-pressure or lower energy level in particles. Fast-spinning particles can grow larger before the lower energy level inside them lets energy fall into them. 

Fast spin makes it possible that the field doesn't drop inside that particle so often as in the slowly spinning particle. That means there is more field that falls in the particle if the particle spins faster. In fast-spinning particles, the energy level inside them can be lower than in slowly spinning particles. That can explain why high-energy particles are heavier than low-energy particles. 


https://bigthink.com/hard-science/will-physics-ever-prove-that-gravitons-are-real/


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


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


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


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


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


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


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


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

Saturday, December 21, 2024

The graviton: does it exist?




When we look at the image of the photon we see the ring-shaped structure. That structure can focus energy in the middle of it. That means the answer to the mystery of graviton can be found in the middle of the photon. That means graviton can be the point where the photon focuses energy from the Higgs field. Photon has two forms. 

The particle and wave movement forms. When we look at the photon's structure. It's possible. When the photon takes the wave movement it travels through that ring-shaped particle-photon. That thing can transmit energy or information to the wave that travels through the photon. 

The String theory describes a graviton as a quantum-size black hole. And the string or superstring is the quantum tornado through the Higgs field. 

There is a model that a graviton is a quantum-size black hole. That thing can be found in the middle of the photon.  That thing makes the Superstring theory true. In that theory, so-called superstrings form elementary particles. In the String model, The superstring is an extremely thin electromagnetic field. And that means the superstring can be a quantum tornado in the Higgs field. 

In some versions of the String Theory, the quantum-size black hole makes the quantum tornadoes through the Higgs field. And that quantum tornado would be the superstring that forms all material. The superstring forms a whisk-shaped structure in elementary particles. And we see that structure as elementary particles like quarks and other fermions. 


But that is only one of the possibilities that can explain why nobody found graviton. 


There are four fundamental interactions in the universe. 


Strong nuclear force

Weak nuclear force

Electromagnetism 

Gravitation. 


Graviton is the point that sends gravitational waves. That point is not necessarily a particle. It can be the quasi- or virtual particle. The virtual particle means the energy field or quantum point that behaves like a so-called real piece. 

Graviton is a hypothetical boson that should transmit gravitational waves. Nobody has seen that particle yet. Sometimes people ask: can gravitational waves form without that transmitter particle? 

The gravitational wave is gravitational wave movement and it should behave like all other fundamental interactions. It should have particle and wave movement forms. 

Gravitational waves are wave movements that transmit gravitation. Just like all other fundamental forces have. All other fundamental interactions have waveform and particle form. So, there must be some structure that sends that radiation. The wavelength of waves depends on the objects that send them. It's the same as the diameter of the object. That sends the wave movement. 


All other fundamental forces have a particle that transmits the radiation or wave movement. 


That means: Gravitation should also have that transmitting particle. But there are no observations about that kind of particle. So could gravitation have only wave movement form? 

But the graviton must not be a particle like some gluon or W boson. It's possible. That graviton is some kind of virtual particle. So if we describe graviton again we can say that graviton is the point that sends gravitational wave movement. 

That point can be the point in the energy field or some kind of energy dense in the energy field. That point sends wave movement so often that it pushes other wave formations backward. As I wrote. At the beginning of this text. Graviton can be the point in the photon. That thing explains why we cannot see that thing. 

Another thing that can make the gravitational waves is the particle itself. The model is that all elementary particles have a structure that looks like a whisk. That whisk is the superstring. When a particle spins the superstring pulls Higgs field into it. When that superstring is the hypothetical smallest part of the material gets an energy level that is higher than the environment. 

That thing explains the material destruction or turn into wave movement. In that model, the superstrings form the standing wave between them. Reflection from those fields pulls them horizontally. And that means the material can send two versions of waves. The energy that particles send as an entirety. And the energy that the individual superstrings send. 

The energy that. Particles sent as an entirety cover the energy that individual superstrings send. In some models, the graviton is the quantum-sized black hole. But those things are only hypothetical models.


https://bigthink.com/starts-with-a-bang/gravitons-exist/ 


https://scitechdaily.com/quantum-leap-scientists-reveal-the-shape-of-a-single-photon-for-the-first-time/


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

Friday, November 22, 2024

Researchers created the image of individual photons.



"A new theory, that explains how light and matter interact at the quantum level has enabled researchers to define for the first time the precise shape of a single photon. Credit: Dr. Benjamin Yuen" (ScitechDaily, Quantum Leap: Scientists Reveal the Shape of a Single Photon for the First Time)

The new quantum leap is interesting. Researchers observed the single photon for the first time. The photons structure can tell researchers,  why that strange particle can act like particles with mass. But there is no measured mass in the photon. That means photons should not have the ability to carry energy or information or make quantum entanglements with other photons. 

The image of a single photon makes it possible to control that strange particle, which is the only particle that can reach the speed of light. The image of the photon introduces a structure that looks like a little bit of benzene or a peanut. The shape of a photon can tell why a photon can reach energy stability. That means while a photon travels, it gets as much energy as it releases. 

We can put a presumption that the image of a photon can unveil the mysterious and still hypothetical graviton, the transmitter particle of gravitation. The ring-shaped structure is similar to the ring around stars and other gravitational centers. So could the photon be an electromagnetic field or superstring that orbits the graviton? 

That means. It's possible. That graviton exists. If that wheel-shaped superstring harvests energy from around it, that thing could send wave movement into the middle of that wheel. The idea is that those superstrings are not the same size. And when that photon travels in quantum fields it sends energy as well as around it. And to the middle of it. That can form a stylus-looking structure. 

In some models, photons travel around superstrings. That means the photon would be a quantum skyrmion that is formed around those superstrings. The theoretical superstring is the gravitational or quantum tornado that forms a channel through the universe. That formation makes strings through the Higgs field. 

That means there is a vacuum in that structure that allows particles can travel faster than in a normal Higgs field. The energy comes to the particle backward and. from sides. In some models, a graviton is a quasiparticle that forms at the entrance of the superstring. 

And maybe that thing slows the photon's speed. Or maybe the electromagnetic low pressure will pull the photon´s structure backward. That vacuum or void would deny the photon's acceleration to a speed that is faster than the speed of light. 

So if we try to use that model with another still hypothetical, faster-than-light particle called tachyon, we can think that maybe that tachyon is the particle that looks like omega. When the tachyon crosses the speed of light, the back side of it travels forward, because there is an electromagnetic vacuum in that structure. That thing sends the wave movement or energy strike through that quantum low-pressure. And when that thing hits the tachyon. That pushes it faster-than-light speed. 

The knowledge of the shape of the photons is the thing that allows to creation of new communication tools. Those quantum communication tools are the systems that allow to create the single-photon-based communication systems. In those systems. The shape of the photon determines the state of that particle. 

And if the system can control the shape of the photon, that allows to creation of new and powerful technologies and ultra-secured data transmissions that are in the shape of the photon. The shape of the photon can be like an image. In macro-scale systems, the image like a cross or wave can mean some letter, or they can mean zero and one. 


https://scitechdaily.com/quantum-leap-scientists-reveal-the-shape-of-a-single-photon-for-the-first-time/


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

Saturday, November 2, 2024

Can Tachyon be real?

"Tachyons are hypothetical particles that move faster than the speed of light and travel backwards through time. (Image credit: Yuichiro Chino via Getty Images)" (Space.com, Tachyons: Facts about these faster-than-light particles)

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Article from Space.com. 



"Traveling faster than light and time-travel could be real for tachyons. If one thing science fiction excels at, it's allowing us to marvel at the breaking of the physical laws of the universe. We watch and read in wonder as the warp engines of the starship Enterprise push it to beyond the speed of light, or as Barry or Wally  —  whoever is carrying the name of the Flash at the time  —  does the same in no more than a pair of yellow boots. " (Space.com, Tachyons: Facts about these faster-than-light particles)

"Likewise, we enjoy tales of adventurers like the Doctor, or Doc Brown, using weird seemingly antiquated machinery to violate the laws of causality. What if there was a fundamental particle that could do all these things? Moving faster than light like the Flash, and traveling back through time without the need for a TARDIS or a Delorian or yellow boots. " (Space.com, Tachyons: Facts about these faster-than-light particles)

"That’s a tachyon. But make no mistake, these particles aren’t just the idling's of science fiction writers. Tachyons are the stuff of "hard" science. " (Space.com, Tachyons: Facts about these faster-than-light particles)


https://www.space.com/tachyons-facts-about-particles


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Tachyon is a theoretical faster-than-light particle. And it's a mystery. It should exist.  There are theories that tachyons formed before material. In some other models, the black hole can form tachyons. That happens when particles travel against a field that falls into the black hole. 

But it's harder to see than any other particle. In models, the tachyon moves in the higher dimension. And this makes it unable to exchange information with 3D particles. 

This means that the dimension is the limit to the difference in energy levels. If the difference between the energy levels of two particles is high enough, they are unable to exchange information. 

Tachyon cannot interact with 3D material. Because of its energy level is so high. The interaction time between tachyon and other particles is so short, that we cannot notice it. 

When the tachyon starts to interact the lower energy particle pulls it into a 3D universe. In that model, tachyon transforms into photons or some other bosons. This means that when we see a tachyon it transforms into some other particle. 

Tachyon is an interesting particle because if something travels faster than light, it starts to travel back in time. When we think about the tachyon. And its relationship with another hypothetical particle called: graviton the missing gravity transportation particle we can understand tachyons better. 

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There is the possibility, that also hypothetical graviton particle is the tachyon tail that forms the channel. That channel is the quasiparticle-like exciton. In that model, the graviton is a quasiparticle that is the channel behind the tachyon. 

In some theories tachyon and graviton are the same thing. If a tachyon exists and it travels faster-than-light it leaves the pothole or channel behind it. That channel forms an exciton-type quasiparticle that pulls a quantum field or information into it. But proving that thing requires the existence of a tachyon. 

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The idea is that the graviton which could be a small- or quantum-size black hole falls through the universe into the past. If the escaping velocity is higher than the speed of light, that causes that particle or object to start to travel back in time. When an object travels back in time, it creates a hole in the spacetime. And we see that thing as a black hole.

Then the photon can fall into that hole. The quantum-size black hole makes the channel where photons can fall. The side-coming energy presses the photon and raises its energy level higher than it should be. In that model, the quantum-size black hole turns the photon into the tachyon. The quantum-size black hole itself pulls photons into the channel where it start to travel into the past. 

When some particle travels in that kind of tunnel or wormhole the side coming energy pushes it to the shape of spaghetti. When the speed of the particle closes the speed of light. 

There grows the nose at the front of the particle. The reason for that is the reflecting quantum field that denies crossing the speed of light in a normal universe. 

In a critical moment, the quantum field jumps away from the particle. And that causes energy to flow out from it in critical moments. The particle or object can accelerate its speed only if energy travels into it. When energy travels out, that slows particles. In the wormhole, side-coming energy continues the energy flow into the particle that travels in it. The side-coming energy accelerates the particle even if the quantum field in front of it jumps away. 

There are three ways that a tachyon can cross the speed of light. The one thing is tachyon travels in an energy channel that pumps energy into it. If that channel is small there is forming an energy wave behind the tachyon. 

If energy cannot bypass that particle. The difference between energy levels behind and ahead of the particle turns high enough. That thing acts like Alcubierre WARP drive. 

In another version, tachyon spin is so fast that when it travels near the speed of light, that spin takes it over the border. The third version is that the particle travels against the quantum field that travels in opposite directions and can cross the speed of light because the impact speed between that field and the particle is higher than the speed of light. 

The energy level in the past is higher than it's now. So the energy that travels through that wormhole from the past to the future can explain dark energy. The tachyon would travel to the past and open this kind of channel into the past. 

The graviton or quantum-size black hole can turn this channel into a spiral-shaped whirl. The black hole itself will create the channel and there is the energy low pressure near the tachyon. That means energy that follows the graviton and photon from above pushes them back in time.

There could be some kind of skyrmions. That travels around the channel in the opposite direction. The idea in this model is that. Those wormholes transport energy from the past to the future by using this shortcut. And maybe that energy is the thing, that we see as dark energy. 


https://scitechdaily.com/dark-energy-mystery-mounting-evidence-points-to-black-holes-as-hidden-source/


https://www.space.com/tachyons-facts-about-particles


https://www.thebrighterside.news/post/breakthrough-tachyon-discovery-is-a-major-leap-towards-time-travel-reality/


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


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


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

Friday, November 18, 2022

Wormholes could explain dark energy and dark matter.




When we think that the hypothetical graviton particle is a quantum size black hole. That thing can also explain dark energy and dark matter. If a mysterious and still hypothetical graviton particle is a quantum-size black hole that quantum-size black hole is acting like all other black holes. 

The time is inverse also in the quantum-size black holes. And that thing could pull superstrings inside it. So the quantum size black hole will transfer superstrings to the point in spacetime, where it formed. And that thing can explain why we cannot see dark matter. 


*If graviton is the quantum-size black hole. That can explain dark energy and dark matter. 


*Quantum-size black holes are similar to regular black holes. They are time loops. 


When escaping velocity turns higher than the speed of light. Time starts to run backward. And black hole brings the material to the point, where it was born. 


*The dark energy could be like Hawking radiation. In that case, quantum-size black holes send (Hawking) radiation. That has a different wavelength than Hawking radiation. That comes out from regular black holes. 


*And dark matter is material that travels in wormholes. 


If dark matter is material that travels in the wormholes and the black hole is the wormhole itself. That thing can explain why we cannot see dark matter or dark energy. 


The black hole is a time loop. 


When escaping velocity is the same as the speed of light time stops. And when escaping velocity turns higher than the speed of light. Time turns to run backward. 

So black hole takes the material to the point in spacetime where it is formed. When the material is in a wormhole or a black hole. It cannot interact straight. But black holes can send Hawking Radiation, which means. 

That there is interaction also outwards from the singularity. And that thing causes one question. Is the dark energy some kind of Hawking radiation? There is the possibility that a quantum-size black hole is sending (Hawking) radiation that has a different wavelength than regular-size black holes. 

String theory explains material is formed of 2D superstrings that can explain dark energy and maybe dark matter. Maybe superstrings are the thing called "information". And that tells that superstrings have mass. The mass of the superstrings is minimal. 

A large number of those things can explain dark energy and dark matter. If the form of all particles is a yarn ball that is formed of flat superstrings that explains why those superstrings are so hard to detect. 


https://www.sciencealert.com/wormholes-may-already-have-been-detected-physicists-say


https://www.siliconrepublic.com/innovation/wormhole-travel-possible


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


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


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


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


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

Saturday, November 12, 2022

Could graviton be one or two quantum-size black holes?



Another model that could explain why gravitation is so special. 


Above this text is an image of the black hole. But that image could be the image of a quark. In some scenarios, the graviton is a small black hole inside the quantum field. The quantum tornado forms the point where that radiation pushes the quantum field away. So there is the electromagnetic vacuum that pulls the quantum field to the ball-shaped form. But there is also another version of the graviton and its interactions. 

The hypothetical graviton particle that should transport gravitation may be two quantum size black holes. That thing causes a quantum field whose shape is similar to the magnetic field that forms around a rod magnet. Those quantum-size black holes would be the south pole against the north pole. And there is forming a quantum tornado around those two black holes. 

Then the quantum fields are forming the lightning structure or superstring structure. That is looking like a whisk. When those black holes that size is smaller than quarks are starting to make the quantum fields or quantum lightning around them the outcoming radiation makes those flashes of lightning stronger. Because that structure starts to rotate, it turns to look like a ball. And maybe that thing is the quark. Maybe that kind of thing could explain gravitation. 

Another model of gravitation or graviton particle is that gravitation is the force that is forming around the fast-spinning particle. The idea is that when a particle spins. It creates the effect where wave motion travels to the poles or the axle of the spinning particle. And because the particle is extremely small. 

There forms a small quantum vacuum bubble to its poles because those waves impact each other just above the quantum field of that spinning particle. That bubble starts to pull wave motion to the axle of the particle. So when wave motion travels at the surface of the particle. 

Those waves are transporting the wave motion that hits the particle to its poles. So that means the particle that is making the effect of gravitation is like a neutron star or black hole. When a particle spins at an extremely high speed. It transfers wave motion to its poles like neutron stars or black holes are transferring. 

What makes gravitation interesting? That is that the graviton is missing. There is the possibility that a graviton is a quantum-size black hole or so-called black photon. The form of the graviton is one of the most important things in the gravitation theory. 

The thing is that things like neutron stars or black holes are not forming energy from nothingness. They are like generators. Generators are transforming motion into electromagnetism. The thing that neutron stars and black holes are doing the same thing. They are transforming electromagnetic fields into powerful energy beams. 

Or otherways saying they are transferring the frequency of the radio waves to X- and gamma rays. In similar ways, the Casimir effect doesn't make energy from nothingness. When Casimir plates are taken very close to each other electron cores form the quantum bridge over that hole. Then the outcoming radiation will inject energy into those bridges. And that thing loads the energy to the Casimir circuit. 


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


https://miraclesofthequantumworld.blogspot.com/

Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...