Showing posts with label Gravity. Show all posts
Showing posts with label Gravity. Show all posts

Wednesday, May 20, 2026

Researchers might have found a dark matter fingerprint from a black hole collision.



"Gravitational waves from colliding black holes may hold subtle clues about one of the universe’s greatest mysteries: dark matter. A new study proposes a way to search for these hidden signatures by analyzing how black holes behave when surrounded by dense clouds of exotic matter. Credit: Stock" (ScitechDaily, Scientists May Have Found Dark Matter’s Fingerprint in a Black Hole Collision)

Researchers might find. The mark of dark matter from the black hole collision. The black hole collisions are the most violent events in the universe. They find incredibly strong shockwaves. Those shockwaves form when the black hole's halos impact. The gravitational fields also send very strong gravitational waves. Those shockwaves press the quantum fields into extremely high-energy and dense form. 

Researchers hoped that those shockwaves could press the dark matter into such a dense form that they could measure it or its effect on gravitational fields. The packed dark matter can cause interference in gravitational waves. In some models, a gravitational wave is actually an energy wave that travels between dark matter particles. 




"A new model developed by physicists at MIT and elsewhere predicts how gravitational waves (blue and red waves) can carry imprints of any dark matter (light purple) that two merging black holes happen to spiral through. Credit: Courtesy of Josu Aurrekoetxea, et al" (ScitechDaily, Scientists May Have Found Dark Matter’s Fingerprint in a Black Hole Collision)

In those simulations reseachers try to find out whether it is possible that gravitational waves can cancel each other out. Another thing that can make this effect interesting is. If some other wave. Could fill the energy ditch. That makes gravitation so different. If those energy ditches are filled, the gravitation will turn opposite. The idea is that a gravitational wave is the energy wave that travels between tw ditches. That means in normal cases, those ditches pull more energy out from the particle than the wave can give. So, if those energy ditches are filled. That means that. Without those lower energy lines, gravity cannot pull objects. Into the gravity center. 

But if a gravitational wave is an energy wave that travels between dark matter particles… 

The idea of this model. It is simple. The dark matter forms of quantum dots. Those quantum dots. They can be real particles. Or they can be exciton-style quasiparticles that form around a spinning string-shaped structure. This means that. The dark matter could be the cloud of quantum dots. Each of those quantum dots will act as an individual gravitational center. Those quantum dots can be some kind of whirls in the gravitational field. 

The gravitational wave is, in this case. The energy wave that travels between those quantum dots. Those quantum dots will send energy waves between each other. When a higher energy quantum dot, or dark matter particle, sends an energy wave. It puts other quantum dot resonate. And if that radiation, or wave movement, has a very short wavelength, it pulls energy out from other particles. 

And when energy travels out from a particle, the other energy tries to fill that hole. This could explain why gravitation is so different. In some other models. The gravitation forms when the energy impulse separates from the particle. That leaves a small. Lower energy area between the wave and particle. If we think that a gravitational wave acts like all other waves. There is a smaller energy ditch forward of the energy wave. If that wave turns lower than the energy ditch. That explains why a gravitational wave pulls particles to the gravitational center. The reason why the energy ditch turns deeper. If we compare it with the energy hill. Is the expansion of the universe. 

Because the energy level in the universe turns lower. That means. That energy wave that the particle sends turns weaker. If we think about what makes those gravitational waves as a thing. That. Only pulls particles into the gravity center. The thing that is required is that the wave that travels between energy ditches cannot replace the energy that those ditches “steal” from the particle. 

But all waves form in the movement of the particles. And maybe dark matter is the particles that form gravity waves.

https://scitechdaily.com/scientists-may-have-found-dark-matters-fingerprint-in-a-black-hole-collision/

Friday, October 31, 2025

When black holes merge. Can black holes explain dark energy?


When black holes merge. Can black holes explain dark energy? 

When we think about gravity. And black holes' movement when they merge. We can ask: can this effect explain dark energy? Or dark matter, or both of them. When black holes merge, they orbit each other before they collide. Gravity is the thing that causes curvature in space and time. That curvature means that the gravity field compresses other energy fields when it pulls them into a black hole. All black holes are surrounded by a transition, or material disk. Those material disks are the most high-energy objects in the universe. When black holes close. With each other. Those material disks start to repel each other. That energy pushes black holes a little bit out from their courses. 

So, gravitation wins, but before the merger, those black holes orbit each other, sending gravitational waves. But when we think about the material disks, particles that orbit the black hole and their event horizon, they transport energy out from that system. The black hole’s event horizon, the point where the escaping velocity reaches the speed of light, is the point where there is no turning back. But before the event horizon, particles can escape from that monster's gravitational field. Maybe. Dark energy forms when some very small black holes interact. 

A photon is a ring-shaped particle that forms around some center. There is a possibility that photons form around the small, quantum-sized black hole. This means dark energy can be some kind of interaction between photons. So. Can dark energy form when photons change their form from particle to wave movement? It’s possible that the photon releases some kind of energy impulse. 

The model goes like that. If there is an energy ring around all gravity centers that sends some radiation or wave movement. That means that energy, or some material rings, form an effect around gravitational and magnetic centers that pushes them away from each other. 

In some theories. Some kind of wormhole. It can bring high-energy particles from the past. If something can bring particles from the past through the shortcut from the past to the present or future. Or maybe. Those wormholes bring high-energy radiation from the past. The fact is that we have no visual observation of dark energy. There is something that forms wave movement that dominates the universe. There is a possibility that the dark energy is some kind of virtual effect. When a black hole’s relativistic jet hits particles, it can turn them to spin. The gamma-rays can turn some part of an atom’s nucleus, like quarks, to spin very fast. 


Theoretically is possible that the fast-spinning quarks can bind energy into it, and then conduct it out from its spin axle. And that could turn material dark. Or invisible if the observer is not looking at it straight from the quark’s spin axis. If that thing is really possible, that means the matter can turn into dark. Because those quarks bind all energy into them. And if matter can wobble between dark and visible states, transformation between those states requires energy. So if matter puts quarks to spin. That requires energy. And if particles slow their spin, that means those particles release energy. If that is really possible. That is the ultimate step in stealth technology. 

And in the most exotic models. Dark energy forms in particles of energy. Or quantum fields are spinning extremely fast. This extremely fast-spinning quantum field locks energy into a particle. Then, for some reason, the spin of that field slows, and that particle releases its extra energy to the environment. That means. Those fast-spinning quantum fields act like natural Tipler cylinders. The idea of the Tipler time machine. Or the Tipler cylinder is simple. Fast-spinning cylinders. Cause time dilation in objects and particles inside them. That means that those cylinders pump energy into those particles, and that slows their aging. So, time moves more slowly in those cylinders. 

The energy whirls and material disks can form the Tipler Cylinder around neutron stars and black holes. So, why doesn’t the fast-spinning quantum field make the same thing into particles? When that fast-spinning quantum field locks energy into a particle. That means time travels more slowly in that field. But if that spinning quantum field is gone, that means that the energy level in particles is higher than it should be. That particle releases more energy than it should. And that can be seen as dark energy. This is one theory that could explain the mystery. Called dark energy. 


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


Sunday, October 12, 2025

Dark matter and dark energy can have more than one source.



"Protons are messy on the inside. Made of three main quarks (illustrated with large spheres), the particles also harbor a constantly shifting collection of transient quarks and antiquarks (smaller spheres) and gluons (squiggles) that bind the quarks together."(ScienceNews, Protons’ antimatter is even more lopsided than we thought)

"The proton’s antimatter is out of whack. An imbalance between two types of antiparticles that seethe within the proton is even wonkier than previously thought, a new measurement indicates."(ScienceNews, Protons’ antimatter is even more lopsided than we thought)

Protons are built from t­hree quarks — two “up” quarks and one “down” quark. But they also contain a roiling sea of transient quarks and antiquarks that fluctuate into existence before swiftly annihilating one another. Within that sea, down antiquarks outnumber up antiquarks, measurements revealed in the 1990s. And that lopsidedness persists in a realm of quark momenta previously unexplored, researchers from the SeaQuest experiment at Fermilab in Batavia, Ill., report February 24 in Nature." (ScienceNews, Protons’ antimatter is even more lopsided than we thought)

One of the things that could explain dark energy and dark matter is distant antimatter-matter annihilations. When two particles another matter and another antimatter collide. That forms the high-power energy impact. In that reaction, both particles turn into energy. And that can explain where that matter is gone. Distant antimatter-matter annihilation can also form short-term bubbles in the quantum fields. And those bubbles can act like particles. When those bubbles are filled, those things are gone. And the energy that those particles released can form dark matter. It’s possible that the particles that annihilate are not positron-electron pairs.

 There is a possibility that those particles are quark-antiquark pairs in a proton. When a proton goes into the low-energy area or into a weak quantum field, those quarks can move away from each other, because the quantum fields around them turn weaker. That expands the proton and gives space there those quarks and antiquarks to move.  In that case, those quarks and antiquarks will touch each other. In normal cases, the outside quantum field pushes the proton into its form. In that case quark doesn’t touch its antiquark pair. But when the proton expands, that allows those particles to move. And then those quark-antiquark pairs can touch each other. 






Above, the object is in its gravity pothole. 


The nature of gravity is that the gravity makes an energy pothole in the spacetime. The reason for that is that the gravity center binds energy into itself. When an object is in its gravity pothole, the side coming energy pumps energy into that particle. The spin binds energy into kinetic form. And the particle can start sending it away from its poles or spin axis. That forms the wave-structure that can turn into a Lorentz (strange) attractor. That structure can pump energy into a particle, and that can transform the particle into a black hole, if it cannot realease that energy. The size of the pothole or the energy and material whirl around the particle determines when it can release its energy. If that pothole is large enough, that thing can cause a situation where the object turns into a black hole. 

Maybe there is more than one thing that causes effects that we know as dark matter and dark energy. Quasiparticles like excitons can act like they are real matter. Things like expansion of the universe, and small energy channels through space can cause effect that looks like dark energy and dark matter. 

Dark matter is one of the most interesting unsolved mysteries. The problem with that thing is simple. Nobody has seen dark matter particles. That means some researchers want to disprove the dark matter theorem.  There are solutions that can explain dark matter without dark matter particles. There are theories about the “free excitons” and fast-spinning particles that quantum fields are spinning so fast that they throw radiation that bypasses them. That phenomenon can be described as a quantum-level, or subatomic-size, Meissner effect. The particle drives electromagnetic fields past them. And that causes a situation where the particle acts like a stealth surface; its radiation slides over it. 

The free exciton model means. There is a hole, or a lower energy point, in the quantum field. And if there is some kind of energy ring surrounding that thing, this kind of virtual particle can put energy into a flow.  There is also a possibility that the lower energy area around galaxies and galactic superclusters causes a situation in which those particles and wave movement accelerate faster than calculated. If those particles travel in some kind of electromagnetic wormhole, or electromagnetic tornado. 

That can cause the so-called maser effect. That pumps energy to those particles. That thing. Makes those particles higher energy than they should. And when particles come out from the electromagnetic wormhole, they release their extra energy. And if those particles traveled through the wormhole, it would be on a higher energy level than it should be. In this case particle is more massive than it should be. And maybe that explains dark energy. 





“Artist’s impression of two nuclear spins, remotely entangled via the geometric gate applied via the electron. Credit: Tony Melov / UNSW Sydney” (ScitechDaily, “Like Talking on the Telephone” – Quantum Breakthrough Lets Individual Atoms Chat Like Never Before)


The nature of gravity is one of the things that can put energy. Into moving. Faster than it should. There is a possibility that the gravitational field looks like Lorentz’s Strange attractor, or, Lorenz attractor. When the gravitational center spins, it pulls those bubbles into it. When those bubbles or sides of “lying 8” travel to the gravitational center, that transforms them into kinetic energy. They pull particles and wave movement with them. That means this model explains that gravitation is the opposite of wave movement. If wave movement travels into the center, it pulls the fields and particles with it. In that case. The side coming field tries to fill the space that the field. That the wave movement took with it, leaving behind. When a wave takes a field with it, it is like a string that leaves micro- or quantum whirls behind it. Those whirls can condense the EM field. 

There is also a possibility that the particle goes into a Lorentz attractor, a shaped energy field. If there is a higher energy particle on the other side of the attractor. Or energy travels outside into the attractor, which means the attractor pumps energy into the particle. If Energy travels out from the middle of the particle, that forms a situation where the particle accelerates energy fields. Those energy needles are very thin and hard to detect. And the main question is, what puts energy into motion, and what causes the gravitational effect; that origin is unknown. One of the answers could be the energy movement in energy fields, which takes particles and other fields with it. In some models, colliding quarks and other subatomic particles cause effects that we know as dark energy. 





Above: The model of a wormhole. 


And of course, the real wormholes. Or the gravitational wormholes can explain dark energy and dark matter. If a particle travels through the Einstein-Rosen bridge, it will not lose its energy. That means the particle is also more massive than it should be. When a particle comes out from the Einstein-Rosen bridge, or wormhole, it releases its energy. At that point, the particle also loses its mass. This model explains dark energy and dark matter as particles that traveled through the wormhole. And when they came out of that tunnel, they released their energy immediately. That energy release removes their weight and turns them into regular particles. There is a possibility that a wormhole cannot transmit anything other than radiation or elementary particles. 

In some models, the superstrings, or ring-shaped energy fields, can act like matter. When those energy rings spin, they bind quantum fields into them. And this means that the dark energy and dark matter are the effects that form in field interactions. When the wheel-shaped energy fields touch each other. That forms the soliton, or “electric arc” that turns energy denser than it should. 

The black hole interaction is very complicated. The magnetic field switches on and off. And that causes the plasmon eruptions. But also things like relativistic jets are traveling in space. Those jets can travel in an electromagnetic tunnel that pumps energy into relativistic jets. And also when wave movement travels through plasmons, that increases their energy level. That means there might not be only one thing that causes dark energy and dark matter. The virtual- or quasiparticles and cosmic voids can accelerate the wave movement. Same way as some particles with hyper high energy levels can cause measurement errors. There is also a possibility that there are more black holes in the universe than we expected.  

The black hole causes a massive virtual redshift. This means its gravity pulls wave movement into a straight form. This effect causes a situation where the black hole seems to be at a longer distance than it really is. The black hole that is quite close to the Earth can move quantum fields faster than they should. So, that means there can be more than one effect that we see as dark matter and dark energy. 



https://www.quantamagazine.org/decades-long-quest-reveals-details-of-the-protons-inner-antimatter-20210224/

https://www.sciencealert.com/decades-long-experiment-finds-strange-mix-of-antimatter-in-the-heart-of-every-proton

https://www.sciencenews.org/article/proton-antimatter-lopsided-quark-antiquark

https://scitechdaily.com/dark-matter-and-dark-energy-dont-exist-new-study-claims/


https://scitechdaily.com/is-dark-matter-evolving-a-new-theory-to-solve-the-universes-biggest-mystery/


https://scitechdaily.com/like-talking-on-the-telephone-quantum-breakthrough-lets-individual-atoms-chat-like-never-before/


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


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


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


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


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


Monday, September 15, 2025

Does spacetime (or, space-time) exist?

  Does spacetime (or, space-time) exist? 



"Exploring different approaches to understanding space-time deepens our understanding of reality. Credit: Shutterstock" (ScitechDaily, Does Space-Time Really Exist?)

"Is time something that flows — or just an illusion? Exploring space-time as either a fixed “block universe” or a dynamic fabric reveals deeper mysteries about existence, change, and the very nature of reality."(ScitechDaily, Does Space-Time Really Exist?)

Does spacetime exist? Does the space have time? We know the thing. Called material time. That time is seen in material evaporation. Because of the expansion of the universe. That thing causes an effect that all material turns into a wave movement. 

In the five-dimensional cosmological model, there are three spatial dimensions. And two dimensions in time.  Those two dimensions are time that goes forward and time that travels backward. In that model, time is one of the fundamental interactions. The idea in the spacetime model is that the Big Bang released material in time. Or it separated time and material. In this case. We talk about material evaporation. The model goes like this. The universe formed from a so-called Kugelblitz black hole. When the whirl started to collect energy in the proto-universe, it formed the black hole. Straight from that energy field that condensed into the black hole. When that black hole evaporated or detonated. That formed an event called the Big Bang. 

That means there is space formed between superstrings that will form the first particles. In that model, the superstring is an extremely thin energy field that turns into fermions and bosons. Superstrings are not single things. They are complicated internal structures. And in black holes, those superstrings are in such a tight form that they have no space to oscillate. That space caused an effect that those superstrings started to send sub-waves. When a superstring oscillates, it sends part of itself into its environment. This event would be similar to the material evaporation. 

When there is no energy that can resist the superstring, it sends the sub-string. In the same way as material, the existence, thickness, or number of structures in a superstring depends on the field that resists the superstring. The ten-dimensional superstring model explains the universe and space as an endless number of superstrings. The density or number of those superstrings in the space determines the strength of the field. When there are lots of strings in a small area, that means the field is strong. 

The main question in time dilation is this: Does that effect only push energy into particles? Or, does that affect cause a situation where the particle travels in time? 



Above: The 2D model of the gravity center. The gravity center packs energy fields around it. That forms a denser energy area. The gravity makes a pothole, but it also packs energy fields around the gravitational center. 

This denser, or higher energy area causes the effect that energy transfer to the environment slows down. And that slows material evaporation. If the difference between energy levels in the material and the environment is high. The energy level around the particle is very low. That raises the speed of energy flow out from the particle. The same effect can cause superstrings to decay just as matter. 

And that means the superstring model tells us that the spacetime should exist. When a gravity field forms, the gravity center rolls the field of those superstrings to the gravitational center. That effect is seen as a whirl in the universe. Those whirls can be extremely large. And all spiral galaxies are whirls that form around the supermassive black holes. Those whirls pull back, and without them, the black hole in the center of the galaxy will be detonated. 

And then we go to the spacetime. The idea in spacetime is this: energy fields or wave movement are everywhere. Those energy fields can condense into material. Because of the Schwinger effect. The Schwinger effect forms elementary particles, fermions. And bosons. In a similar way. The Schwinger effect explains the Kugelblitz black hole as a structure. Where the whirl will collect the energy fields or strings into one point. When there is enough field. Packed into one point. It creates a strong gravity effect that pulls everything into it. Without that whirl, the energy that is stored in a black hole is released. The whirl is the thing. That keeps the black hole in its form. 

We can think that when time moves from the past to the future, that thing looks a little bit like a superstring. When those time strings or “arrows of time”, or “time arrows” (Time’s arrow)move, they push time back around them. So when the arrow of time moves forward, that moves other arrows backward. If one of the arrows of time moves faster than the other arrow of time. That faster time arrow slows the slower arrows of time. The reason for that is that the time arrow moves energy into those other arrows of time. 

The arrow of time, along with Einstein’s Theory of Relativity, explains that when gravity turns so strong that the escape velocity turns higher than the speed of light. That means time starts to travel backward. The black holes will pump energy into the past if that model is right. And that energy is released at the point where a black hole forms. But the question is, does that thing really happen? Or does the black hole only store information and release it when it evaporates? This is the thing. That makes supernovae interesting. 

Theoretically, it is possible to decode the information that the black hole released. And there is a possibility. A black hole drives information straight into the point where. The black hole formed, and that point is the supernova explosion. Where the black hole got its beginning. 


https://bigthink.com/starts-with-a-bang/argument-against-theory-of-everything/


https://scitechdaily.com/does-space-time-really-exist/


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


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


https://en.wikipedia.org/wiki/Kugelblitz_(astrophysics)


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



Thursday, September 4, 2025

Dark energy could be something incredible.

    Dark energy could be something incredible. 


"The Dark Energy Spectroscopic Instrument is mounted on the U.S. National Science Foundation’s Nicholas U. Mayall 4-meter Telescope at Kitt Peak National Observatory—a program of NSF NOIRLab—in Arizona. Credit: KPNO/NOIRLab/NSF/AURA/B. Tafreshi" (ScitechDaily, The Universe’s Engine Is Changing: DESI Hints Dark Energy Isn’t What We Thought)

Can black holes be the source of dark energy? 

The Dark Energy Spectroscopic Instrument, DESI, uncovers dark energy, and those observations reveal that dark energy can be something nobody expected. DESI’s observations suggest that black holes may be a source of dark energy. That means, there is a structure near the event horizon or in some energy fields near the black hole that transforms material or wave movement into dark energy. Dark energy could form when some structure pushes energy fields. Like some kind of rotating propeller. Or, we can say that the structure in the black hole or its environment just changes the wavelength of the radiation or visible energy so short that we cannot see that wavelength. Black holes are bright gamma- and X-ray objects. 

There is a possibility that this bright high-energy radiation covers dark energy below it. The main question in this transformation model is simple. What is the wavelength that turns into dark energy? Does dark energy form when spinning structures interact with gamma-rays?  Gamma-rays have the highest known energy level and the shortest known wavelength. So, can that interaction, with gravitation radiation, transform high-energy radiation into dark energy? 

This model suggests that when high-power gravitational waves come out from the black hole. It changes  the energy fields near the black hole. So, what are gravity waves? They are like energy potholes in the universe. They can form in situations when some shortwave wave movement travels against energy fields. That shortwave radiation pulls energy out from those fields, forming a ditch that pulls particles and other objects to the gravity center. That radiation or wave movement causes changes in the wavelengths of other radiation. 

If black holes are the dark energy sources, that would be a more fundamental observation. Than nobody expected. Dark energy forms when some structure in the black hole pushes fields that fall into the gravitational center. A black hole's spinning binds energy into it. But the expansion of the universe causes a situation. Where that black hole loses its mass all the time. Laws of physics determine that energy cannot just vanish. It can turn into materia. And matter can turn into energy. That means the source of the dark energy can be in the black hole’s evaporation. When a black hole turns into radiation. That means it turns its mass into energy. 


Could there be two versions of gravity? 


1) Gravity that forms when a particle vaporizes or turns into wave movement. That vaporization or reaction where matter turns into energy or wave movement pulls energy to that particle. The evaporation makes an object a gravity center, which pulls particles into it. When a particle or any object, including a black hole, sends a wave movement, it releases energy, or wave movement. And that wave movement binds energy from other energy fields. 

2) Another version of gravity can happen when fast-spinning black holes pull energy to the event horizon and near it. That energy travels to the spin axle, there it travels through the space. This thing means that the gravity center acts like a giant thermal pump. And if we think that the energy waves that travel in a relativistic jet are the string-shaped structure, those strings can bind energy from around them. That can mean that dark matter beams can be the source of dark matter, the mysterious gravity effect. 


So can fast-moving thin energy fields, or energy waves, be the source for dark matter? That means when an energy beam travels in the universe very fast, it binds energy into itself. Or the string binds energy into its head. Then energy travels back in that string and pushes fields away from it. But first, that string’s energy level must turn so high that it can make that thing. 

That model can explain why a long energy string, or a superstring, can be hot and cold at the same time. When a superstring collects energy into it, and if its speed is high enough, that can form an effect where energy travels out from the string from its back. So the string itself is not visible. But the energy field that it packs around it glows. And if that string can move energy in some direction in an extremely short-wave form, that means that the string packs energy from around it and turns its wavelength. When energy travels around those fast-moving strings, it forms a situation that looks like gravity.  

Can the dark energy source be in the hypothetical dark matter particles interaction. Dark matter particles like weakly interacting massive particles, WIMPs, and axions are hypothetical particles. There is a possibility that fast-spinning particles can turn into string-shaped structures. So, the fast spin movement stretches those particles into the shape that seems like a superstring. 

Another explanation for dark energy is that. Hypothetical dark matter particles. Or impacting gravitational waves, can form dark energy. Near black hole conditions are extreme. That means if there are dark matter particles or wave movement impacts. And maybe those impacting waves can form a wave movement that we cannot see. But the most exciting versions of those theories suggest that dark energy can form in gravitons. Those still hypothetical gravitational transpoting particles could be so-called quantum-size singularities or quantum-size black holes. 

The model goes like this. Those particles will not actually form dark energy. They just transform other energy forms. Or wavelength, into dark energy. This happens when a particle affects a fundamental force’s wavelength. We know four fundamental forces. Those forces are gravity, electromagnetism, the weak nuclear force, and the strong nuclear force. Today, we call those four fundamental forces “fundamental interactions”. Every single fundamental interaction has a unique wavelength. 

That wavelength depends on the size of its transportation particle, called bosons. Energy cannot form from nowhere, but it can change its form. When energy changes its form, that means its wavelength changes. So, theoretically is possible to transform gravity waves into electromagnetic energy. But the problem is this: we don’t have tensors that can make this thing. 

That means that. The graviton simply moves wave motion to another place. So the gravity center acts like a thermal pump. The idea is that the energy travels. To the spin axle of the graviton. There, it moves out from the particle as a very thin energy string. And if gravitons form black holes, that means black hole transports energy to their poles. And then sends that energy as a string or a thin energy beam into the space. So when that happens, the reaction can look like gravitation. 

https://scitechdaily.com/the-universes-engine-is-changing-desi-hints-dark-energy-isnt-what-we-thought/

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


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


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


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


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


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


Sunday, August 17, 2025

Black Holes, Dark Matter, and Information.

   Black Holes, Dark Matter, and Information. 



"Artist’s conception of a supermassive black hole, billions of times more massive than the sun, like those found at the centers of galaxies. The black hole’s rapid spin and powerful magnetic fields can launch enormous jets of plasma into space, a process that could potentially generate the same results as human-made supercolliders. Credit: Roberto Molar Candanosa/Johns Hopkins University" (ScitechDaily, Scientists Eye Black Holes as Cosmic Supercolliders in the Hunt for Dark Matter)

At the beginning of time, before our universe, only a G-field, or gravitational field, existed. Then, there formed some kind of whirls in that G-field. Those hypothetical whirls were gravitons. The idea is that the hypothetical graviton particle is a stick-shaped structure, a particle that forms from the quantum field. 

The form of the hypothetical graviton particle could be like tornado. So are the graviton and another hypothetical particle, axion the same thing? The idea is that we cannot see axions because their spin is so fast that it creates fields around them in the shape that looks a little bit like a black hole. 

The idea is that the graviton is so smooth that it cannot take outside fields inside it. And then it starts to transport those fields into its spin axle. So could that thing also explain dark energy? Graviton pulls energy from around it. That particle binds that energy inside in the form of kinetic energy and then aims it to the spin axle. That particle looks like a black hole. The particle collects energy until its energy level turns so high that energy can start to travel outside the particle or quantum field that surrounds it. 

When the mass or kinetic energy of a particle grows, it pulls material and quantum fields from larger areas into it. That thing locks black holes into their form. If that whirl vanishes black hole erupts immediately. That whirl denies the energy escaping from the particle’s or objects' equator. And that is the thing that creates the black hole’s relativistic jet. 

Black holes pull information inside them. Or if we think carefully, black hole rolls information from its environment around its spin axle. That means there is possibility to release that information. There is a question of whether information exists without a physical form. So if we think that information is wave movement, we must ask can information travel without superstrings or does it need superstring for existence. Information will be stored in quantum fields and particles as in curves. That should not be erased even in black holes. Those curves, or “mountains” and “valleys” can turn so low that they are hard to detect. 

But theoretically is possible to restore, or recalculate information that black hole stored. When black hole pulls quantum field, and information that quantum field carries inside it, we can think that the process is similar when something rolls paper around axle. The paper forms the roll, and it's possible to roll that paper from the axle. This is the thing. That makes the black hole collisions interesting. There is a possibility that during those events, the black hole can pull information out from another black hole. And possible somday we could decode that information. 

Researchers uncovered a hidden symphony in a black hole hidden vibrations. And that might help them to read information. That the black hole stored. 


"Black holes don’t just warp space, they sing. And now, for the first time, we’ve figured out what their cosmic echoes really sound like. Credit: Shutterstock" (ScitechDaily, Scientists Uncover the Spiraling Symphony Hidden in Black Hole Vibrations)


Another interesting thing in the universe are very old, large black holes. The biggest black holes formed in the early universe. Those monsters lost their mass after that. The reason for this is the expansion of the universe. Or, otherwise, weakening quantum fields and decreasing the number of particles. This thing tells. The universe expands. Or does it? There is another explanation for that thing. This very radical theory goes like this: the black hole is a more common phenomenon in the universe than we expected. And the black holes that are “sleeping” simply pull particles and quantum fields inside them. If those black holes exist between galaxies, they are very hard to detect. 

If all electromagnetic fields and particles are formed after the Big Bang, or the beginning of the universe, that means that when black holes pull those fields and particles inside them, there are fewer particles and fields left in the universe. So, can we see that effect as an expansion of the universe? There is a possibility that only the G-field existed before the Big Bang. And that field formed all other quantum fields. But we know that black holes are massive objects. There are black holes between galaxies. And black holes can collact particles to around them. 

That means that the dark matter should interact with black holes. And maybe that thing helps to find things like axions. Axions are hypothetical dark matter particles. Sometimes is introduced that axions are particles that spin very fast. That thing means that the axion can be like a stick or some kind of rugby ball. So, that means that. Maybe near black holes, regular particles could turn into axions. When a particle's spin accelerates, it binds energy into it in the form of kinetic energy. During that process, the outside quantum fields travel to that particle. 

And press it into a smaller size. If we think that particle is a whisk-shaped superstring stucture when outcoming quantum field pushes particle into a smaller size, those superstrings turn closer to each other. If those superstrings turn close enough to each oher. That turns the particle very smooth. And that means the quantum fields travel around the particle. The quantum fields that travel to the particle’s poles will start to travel out from the particle along its spin axis. That thing means that the particle starts stretching. 

And then it starts to transport the quantum field out from its spin axle. If some stick-shaped, fast-spinning particles form black holes, that means that the black hole will not pull things inside it. It just accelerates and aims fields form around it. That thing explains the black hole relativistic jet. That causes the idea. That maybe hypothetical gravitons are axions. Maybe. The graviton is like a tornado in the G-field.  As I wrote at the beginning of this text. 


https://scitechdaily.com/mysterious-radio-signals-reveal-whats-hiding-between-galaxies/


https://scitechdaily.com/scientists-eye-black-holes-as-cosmic-supercolliders-in-the-hunt-for-dark-matter/

https://scitechdaily.com/scientists-uncover-the-spiraling-symphony-hidden-in-black-hole-vibrations/


https://scitechdaily.com/webb-telescope-spots-oldest-black-hole-shattering-cosmic-records/


The model of Hawking radiation. And black hole evaporation.

  A quasar emits exceptional amounts of energy generated by matter falling into a supermassive black hole. Credit: NASA, ESA, and J. Olmsted...