Showing posts with label matter. Show all posts
Showing posts with label matter. Show all posts

Saturday, August 8, 2026

Outside the universe.



"A visualization of a 3-torus model of space, where our observable Universe could be just a small portion of the overall structure. Similar to imagining our Universe (or any three-dimensional space) being enclosed by a two-dimensional boundary, our three-dimensional space may in fact be the boundary around a higher-dimensional space that better represents our "true" underlying reality. Although there are constraints on the properties and number of such extra dimensions, the possibility cannot be ruled out. However, the lack of repeating structures and the spatial flatness of the Universe tells us important information about how much larger than the visible part of the Universe, at least, the unobservable Universe must be." (Big Think, Is the Universe truly infinite in size?)

Is the universe infinite? This is an interesting question. And if we want to get an answer, we should define the universe. Or should we define what the universe means? Should that term mean the matter inside the structure where we live? Or should we include space outside this structure in this definition? When we define the universe as the structure in which we live. We should define the limit of the universe as the border of matter as we know it. There is something behind the universe. And that something is at least great nothing. Or there could be other universes. The great nothing should involve some very weak quantum fields. 

But the thing that makes great nothing, or great emptiness, the area that we cannot observe, is its energy level. The energy level outside the universe is lower than inside it. And that’s why all energy from the universe travels to that great nothing. Because energy flow is one way. And there is no reflection. Or, there is no reflection. That energy level rises so high. It can reach the universe’s energy minimum. 

We cannot get any signals from that area. Actually, the reflected energy level should rise above the energy minimum. That energy, or wave movement, can penetrate the universe. Otherwise, energy from the universe turns it back. When. A particle goes into that great nothing. It. Expands and loses its form as matter. First, atoms lose their electrons because there is no resistance or quantum back pressure. That keeps them around the atom. The situation is similar. To the situation, we take a balloon into a vacuum. That balloon expands and detonates.  The particle’s shell is like a whisk. 





“The Bubble Nebula (NGC 7635), imaged by the Hubble Space Telescope, is seven light years across” (Wikipedia, Stellar-wind bubble). Maybe galaxies are surrounded by that kind of bubble. And if a similar bubble surrounds the universe. That partially proves the multiverse theory. 

Because that bubble requires the impact wave from radiation. And particles that come from other universes outside our universe. Or what comes from sources outside the universe. The problem is this. There could not be any other objects. Than. Other universes. Things like stars and planets will be erased immediately. Gravity keeps our universe in its form. But the great nothing pulls it larger and larger. This causes a situation. Their energy level decreases, and entropy (disorder) rises. 




“An annotated illustration of the interstellar medium on a logarithmic scale. The solar gravity lens marks the point where a conceptual spacecraft in interstellar space could use our sun as a gigantic lens, allowing zoomed-in close-ups of planets orbiting other stars.” (Wikipedia, Heliosphere)



“This image shows the wind from the star LL Orionis generating a bow shock (the bright arc) as it collides with material in the surrounding Orion Nebula.” (Wikipedia, Stellar Wind)


When that shell expands, those strings form this structure. They cannot keep their form. Or, otherwise, in the case of hadrons and baryons. Those particles. They cannot keep quarks inside them. 

In that expansion. Hadrons like protons and neutrons expand. The quarks will go too far apart. And strong nuclear interaction cannot bind them together. The strong nuclear interaction forms in the strings; there, gluons. Bosons. That transport the strong nuclear force. Travel between quarks. And the quantum field that holds those quarks inside the structure that we call protons and neutrons. If. That field or shell turns large enough. That thing cannot bind quarks. 

Outside those particles, the existence of quarks as particles. Is very short.  This means that the great nothing. It erases matter immediately. So, that is the great quantum eraser. It doesn’t cause matter to vanish. It just turns it into a wave movement. And that is the idea of quantum erasing. It only turns matter into energy. 

The great nothing. It pulls the universe larger and larger. That causes material evaporation. This expansion raises entropy. And that free energy- entropy- destroys the universe. That is one model of the universe. The limit of the universe is the limit of matter as we know it. But there is one “but”. This means that there is no impact wave between the universe and the great nothing. If. There is a structure at the edge of the universe.

Their energy level goes low. And then rises again. That means. There is some impact wave. An impact wave requires resistance. This is the reason. Why. A stellar wind bubble surrounds every star. The heliopause is the point. There, the solar wind that comes from the star Impacts. The interstellar plasma flow. Called: stellar wind. The Voyager spacecraft observations support this model. And observatories detected those impact waves around other stars. If. We continue to expand this model. The galaxies should have similar structures around them. So, we could call those structures the “Galactopause”

 That should form the standing wave that surrounds every single star. There are also similar impact areas around galaxies and galactic clusters. If. There is a similar impact area around the universe. That means. There is something that resists the plasma flow. And if that impact area is found. That supports the multiverse theory. The cosmic flow also supports this model. 

Because. The gravitational effect of that cold plasma wave causes a situation. Where. Galaxy clusters seem to travel in one direction around the same mass center. And if we can prove dark flow. “In astrophysics, dark flow is a controversial hypothesis to explain certain non-random measurements of the peculiar velocity of galaxy clusters. The actual measured velocity is the sum of the velocity predicted by Hubble's law.”(Wikipedia, Dark Flow)

“Plus a possible small velocity move. Into a common direction. Very large-scale correlated flow, called bulk flow, is proposed in this model to be related to certain models of inflationary cosmology.” (Wikipedia, Dark Flow)

That could help. To prove the existence of that plasma shockwave that surrounds the entire universe. That shockwave can form only in certain cases. There is something that resists the plasma flow. 


https://bigthink.com/starts-with-a-bang/universe-infinite/


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


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


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


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


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


https://en.wikipedia.org/wiki/Stellar-wind_bubble


Wednesday, May 27, 2026

Wave-particle duality: when light turns into matter.





“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)

When a photon gets mass. 

The Schwinger effect is the phenomenon. That turns wave motion into matter. This even forms a particle-antiparticle pair. And that is sometimes even introduced as the event. We know it as the Big Bang. We can call the Schwinger effect an event that gives mass to a photon. And turns it into an elementary particle. Like an electron or quark. This thing is one of the most interesting things in physics. In some models, the photon that is the wheel- or ring-shaped structure can simply turn to spin around its axle. Or the photon is the wheel-shaped superstring. 

In models, every particle is actually a ball that the shell delimits. In some theories, the particle’s shell is the whisk-shaped structure of the superstrings. But it's possible that one photon, or a superstring that spins very fast around the axle. Can form that kind of sphere. The idea is that the sphere in the particle has a lower energy level. Than the space around it. In that model, the graviton is the structure that acts like a thermal pump. 

So, why the existence of matter end outside the universe? The reason for that is simple. The thermal pump structure. It cannot maintain a lower energy level in the particle. And when the energy level in the particle. And outside it is the same. That stops the superstring spin. Energy that flows through the particle’s shell keeps that superstring spinning. And when that energy flow ends, the spin of the superstring ends. This means that the particle’s existence as a particle ends. 

And that forms the lower-energy sphere inside it. The idea is that the photon will collect energy from its environment. Into the middle of it. That energy forms the quantum point and starts to reflect. To that photon. This reflection from the quantum point will tense the photon into the wheel-shaped structure. And then that quantum point. Or, quantum dot. That we could call a graviton, puts the energy travel into it. This thing is a graviton if it gives mass to the particle. 

That quantum dot forms a structure. That looks like a quantum-size neutron star. The photon starts to spin around that axle. And then it collects energy from around it. And then aims that energy out to that structure. So, that quantum dot acts like a thermal pump. And the string that forms a photon starts to spin around it. This means that this kind of interaction. It can be behind the Schwinger effect. 

During the Big Bang, energy that hit the photons tensed them into the wheel-shaped form. And then that structure sent energy impulses. Into the middle of it. That formed the structure that could be maintained. The lower energy sphere in the particle.


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/Schwinger_effect


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


https://medium.com/@TVvman/wave-particle-duality-when-light-turns-into-matter-4543af4734dd

Saturday, April 18, 2026

The new research aims to find the answer to the question: what makes matter mass?




“A new experiment offers intriguing clues about one of physics’ deepest questions: the origin of mass. By probing an exotic, short-lived nuclear state involving a heavy meson, researchers uncovered evidence that particle properties may shift inside dense nuclear matter. Credit: Stock” (ScitechDaily, Where Does Mass Come From? Scientists Find Evidence of a New Exotic Nuclear State)

The mass is one of the biggest mysteries in physics. The question of what constitutes mass is a key element in physics. The mass has a straight connection. With gravity. There is a structure that binds quantum fields. Otherwise, it affects all three other fundamental interactions. When the matter binds quantum fields, the quantum field from outside tries to fill that space. And those fields pull particles and wave movement with them. This causes a situation that. Light can travel faster in a gravitational field than outside that field. This requires that the photon travels. 

To the gravitational center. The speed of light is relative. It’s relative to the speed at which its environment travels. So if the speed of the quantum field is 20 % of the speed of light, that means the photon travels 20 % faster if we compare its speed with the speed of a photon outside the quantum field. Because a photon is inside a quantum field, it travels in a gravitational field. It doesn’t break the laws of physics. When an object falls into a black hole through the event horizon. Its speed. Comparing with the environment is zero. 

When a photon or any other particle escapes from the gravitational field, its speed decreases. The impacting quantum field forms an electromagnetic shadow behind it. So the gravity center pulls energy out of the particle. So when a particle travels to the gravitational center. It will pull energy inside it. But when it escapes from that field, it must deliver as much energy as it got. 

But then. The particle tries to escape from that field. The particle must release or transfer as much energy to the field around it. As the field transitioned into it. When the speed of the field and the particle is precisely the same. The field cannot transfer energy into a particle. That is one of the reasons why nothing can escape from a black hole. The energy transition between particle and field ends. When they travel at the same speed. 



Impression of a photon rocket that could transport people to stars somewhere in the distant future. 

What if the gravitational center suddenly disappears? The particle will not need to deliver the energy that it got when it fell to the gravitational center. 

When a particle tries to escape from a black hole, the quantum field creates a shockwave ahead of it. If a particle tries to stop and turn around, the wave forms at the front of it. Another thing is the quantum shadow behind it. And that shadow pulls energy out of it. When the field travels .To the gravity center. With a speed 20% of the speed of light, the impact speed of the static particle and field is 20% of the speed of light. 

This means that the photon’s speed is 20 % lower if we compare the escaping photon’s speed with the speed of a photon that travels outside the gravity field. The photon can travel faster than other photons when it travels to a gravitational center. So, the photon that escapes from a black hole needs to use as much energy as it had when it traveled to the gravitational center. 

This paradox causes an interesting idea about crossing the speed of light. The speed of light is the cosmic speed limit. But if the fields travel to the gravitational center. With a speed. That is about 30% of the speed of light. And the speed of the hypothetical craft. It is about 75-80% of the speed of light; there is a possibility. The craft detonates the gravitational center. This means that the gravitational effect disappears. And that thing removes the need to deliver energy for escaping the gravity center. 

The explosion forms the impacting field. That speed is near the speed of light. And that causes a situation where the impact speed with craft and field is higher than the speed of light. 

Gravitation pulls objects. Like a river pulls woods and other things with it. There is a theory. That. There is a tornado-shaped structure or a small black hole in the middle of each particle. This means that particles are the halos of the quantum-sized black holes. The thing that makes those theories interesting is that reseachers in Brookhaven National Laboratories created quarks by colliding composite particles called hyperons. 

Those impacts formed quark-antiquark pairs. And the Brookhaven staff. Can detect those particle-antiparticle pairs from debris. Those collisions formed. The thing is that hyperons form quark-antiquark pairs when. It decays into two particles. The spin of those particles is opposite. And that makes them particle-antiparticle pairs. The effect that forms matter straight from energy. Or wave movement called the Schwinger effect. 

Colliding quantum fields form the whirl that starts to condense. That whirl forms in the borders of those impacting fields. The question is, what stabilizes those whirls or balls? The thing that stabilizes them is the thing that gives mass to matter. The matter is a condensed quantum field. But what condenses it? And what binds quantum fields in matter? 

Quantum fields are the common name for the four fundamental interactions. The time dilation and its connection. Mass and gravitation are well-known. The reason for that is that gravitation condenses quantum fields. And that thing slows the particle’s evaporation. Condensed quantum fields are the result, not the reason, for something that binds those fields. This means that gravitation interacts similarly with all other fundamental interactions. And that makes mass and gravitation interesting things. 


https://interestingengineering.com/science/scientists-observe-particles-emerging-from-nothing


https://scitechdaily.com/where-does-mass-come-from-scientists-find-evidence-of-a-new-exotic-nuclear-state/


Saturday, March 28, 2026

Researchers think that maybe dark matter is not only one thing.




“Dark matter continues to challenge our understanding of the universe, especially as new observations reveal behaviors that defy traditional models. A recent study proposes that dark matter may consist of multiple interacting components, offering a unified way to explain both diffuse and highly concentrated structures seen across galaxies. Credit: SciTechDaily.com” (ScitechDaily, Mystery Deepens: Astrophysicists Say Dark Matter May Not Be One Thing)

Dark matter means an unknown gravitational effect. This phenomenon is one of the most fascinating aspects of the universe. There is a possibility that dark matter is not a single entity. It might be many things that we see as dark matter. In some models, dark matter doesn’t even exist. That means that dark matter could be ordinary material that behaves differently than reseachers calculated. First thing. What we must realize is that. There are lots of things in the universe that we don’t know. Matter outside galaxies. It has a lower energy level than galaxies. 

This means that the material is very hard to observe. Galaxies cover that matter under their brightness. When particles spin, they release energy from their equator. That forms an energy hole to the particle’s spin axis. And that energy hole pulls energy to the particle. This causes an interesting idea: could the dark matter be a particle? That has spin 1? If that kind of particle exists, it can be invisible. 

The spin of most particles is 1/2. This means that the particle wobbles back and forth. It changes its direction after each 1/2 round. This means that the same particle binds and releases energy. So, could that process be the thing? Behind the dark matter?

So when a particle changes its direction. It sends a photon. The particle must stop before it changes its direction. And at that point, it releases that energy quantum. This means that the particle will form a WARP bubble-shaped quantum low-pressure shape around it. And maybe that bubble can cause a situation. A particle. Like a quark or an electron can turn its spin into one. 

This means that the particle can spin a full round around it. This requires an extreme. Big step between energy levels. When a particle travels over an energy step, which separates. A high-energy area. The extremely low-energy areas can make it possible. For the particle to form a bubble. That allows it to spin a full round around its axle, which could make it invisible. 



“Projected dark matter density distribution and the induced strong lensing critical curves in a two-component self-interacting dark matter model. Credit: Science China Press (ScitechDaily, Mystery Deepens: Astrophysicists Say Dark Matter May Not Be One Thing)

Things like cosmic voids can cause this kind of virtual gravitational effect. When things. Like cosmic voids are forming, outside quantum fields are starting to fill them. This means the cosmic void can cause a virtual gravitational effect. In the same way, when particles are escaping from the galaxies, they will enter the very low-energy area. 

The material evaporation is stronger or faster than in higher energy areas. This means that material sends energy. But the evaporation also binds energy. And maybe energy that travels faster. The particles that evaporate in galaxies can be one thing. That makes the effect that we see as dark matter. When material evaporates or turns into wave movement, it sends photons. 

During that process. These forms. A bubble or quantum low-pressure region around that particle. This means that we see the effect that this void forms stronger than the particle's gravitational field. So. Those small nanovoids could be one source for an effect called dark matter. We must also remember. That also includes. Other particles than protons and electrons that evaporate. Things like quarks and also bosons are evaporating. And that thing binds energy. 

That causes high-speed evaporation. This evaporation form. The bubble is quite similar to the WARP-bubble. When that kind of bubble forms energy, or a quantum field tries to fill it. When the universe expands. That thing. Means that the quantum fields around that bubble turn weaker. But that expansion also pulls. That expansion can form a situation. The bubble’s or void’s size expands all the time. But quantum fields cannot fill it. The antimatter annihilation will cause quantum fields to move. And that means those explosions can also cause an effect. That seems like gravitation. The thing is that. There are many things. That can form the effect. That we see as dark matter. Dark matter means a gravitational effect. That is the second  of two dominant things in the universe. 


https://scitechdaily.com/mystery-deepens-astrophysicists-say-dark-matter-may-not-be-one-thing/


Sunday, March 22, 2026

Could material evaporation be? Behind the dark energy?




When we think about the matter and how matter evaporation binds energy, we must realize one thing. The evaporation. Just puts energy into motion. When we think of a situation where ice turns into water, we might think. This process will decrease the temperature. This is not actually true. If that melting process happens. In one place or one point. 

When things like polar icecaps melt, that process requires energy. That energy is coming from the equator. When polar ice melts. That pulls energy into the melting process. This causes an effect. The equatorial tropical area is expanding. This means that the melting ice pulls energy. From around the planet. Into it. 

So we can think. This model can also fit in the universe’s scale.  We can say that the edge of the universe could be the point where material evaporates faster than inside the universe. That thing. Causes an effect that makes energy travel to the edge of the universe. When the universe expands. That thing causes a situation. The quantum fields in the universe turn weaker. During that process. That expansion forms large holes in those quantum fields. 

Cosmic voids and material evaporation at the edge of the universe, and those cosmic voids can form the dark energy. Cosmic voids focus energy. And that can expand the universe. The cosmic voids can also form a virtual gravitational effect that pulls particles and energy fields into it. 



“The farther away we look, the closer in time we're seeing toward the Big Bang. The newest record-holder for quasars comes from a time when the Universe was under 5% of its present age. These ultra-distant cosmological probes also show us a Universe that contains not just radiation and matter (including dark matter), but also dark energy, whose nature is unknown. Many questions still remain unanswered at the scientific frontiers. (Big Think, Starts with a bang, What was it like when dark energy rose to prominence?)




“Simulation of the matter distribution in a cubic section of the universe. The blue fiber structures represent the matter (primarily dark matter), and the empty regions in between represent the cosmic voids.” (Wikipedia, Void (astronomy))

Conditions in cosmic voids are similar. As at the edge of the universe. Material evaporates. Or turns into energy faster in the cosmic voids than outside them. When particles evaporate, they send wave movement into the center of those cosmic voids. This thing means that energy reflects from the center of those cosmic bubbles. And along with particles that evaporate. At the edge of the universe, that thing forms the dark energy. Or free energy that destroys the universe. 

Material evaporation. It means a process. There, the material turns into energy. Dark energy refers to an unknown source of energy. And in the dark energy case. We should ask, what puts energy into moving? The answer to that problem can be found in the material evaporation. When material evaporates. It acts the same. Way as ice. This process binds energy. And then energy from the environment tries to fill that point. So when. We are searching for the source of dark energy; we should look at the edge of the universe. And. At the same time. We should look at the edge. Of the cosmic voids. 

When material evaporates very fast at the outer edge of cosmic voids. That releases free energy in the system. Most of that energy falls. Into the cosmic voids and then jumps back. From their center. When matter evaporates, it releases energy. That forms it. When we think about cosmic voids, we could think that maybe those cosmic voids could explain dark matter. If most of the energy that evaporating particles release falls into the cosmic voids, they pull matter and wave movement with them in the same way as a gravitational field pulls those things. So, that means. The cosmic voids can form a virtual gravitational effect. That acts like matter acts in gravity centers. This means cosmic voids can also act as a virtual gravitational center. If the cosmic void is deep or empty enough, it can start to behave like a black hole. 

When particles evaporate at the edge of the universe. That effect pulls energy out of the universe to fill the point. There. The matter or particles evaporate. This effect, when it happens at the edge of the universe, pulls quantum fields to the edge of the universe. That makes those fields weaker. This causes an effect. That increases the speed. To turn into a wave movement. This effect pushes the edge of the universe away. And that increases the speed of particle transformation. Into energy. or wave movement. This means that the cosmic voids and the edge of the universe. They can put energy into moving in the mysterious phenomenon called dark energy. 


https://bigthink.com/starts-with-a-bang/dark-energy-prominence/


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


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


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


https://en.wikipedia.org/wiki/Void_(astronomy)

Saturday, February 14, 2026

None of the black holes interacts alone.




“At the center of the Milky Way, something immense and invisible exerts a powerful gravitational grip. For decades, astronomers have assumed it was a supermassive black hole. But new research suggests a more unconventional possibility: a dense concentration of exotic dark matter that could unify the galaxy’s inner chaos and outer calm under a single framework. Credit: SciTechDaily.com” (ScitechDaily, The Center of Our Galaxy May Not Be a Black Hole)

None of the black holes interacts alone. This means that black holes are also part of their environment. And gravitation is not the only interaction with a black hole. 

Supermassive black hole in the center of our galaxy might not be a black hole. Or, otherwise, the supermassive black hole interaction with its environment is more complicated than anybody expected. The new study suggests that the main part of the supermassive object in the center of the Milky Way is composed of dark matter particles that are similar to fermions. Or maybe fermions like electrons are things that form the dark structure in the center of the Milky Way. 

Or, otherwise, we must realize that there is a black hole with dark matter particles orbiting. This means there is a black hole in the middle of the fast-orbiting electron or quark cloud. The spin of those particles would be awesome. So those particles would be more massive than particles outside that structure. And in that case reseachers must calculate what part of the gravitation formed the black hole, and what part of the gravitational effect is formed of those fermions or other dark matter particles. So, the center of the Milky Way is the combination of a black hole and particles that orbit this object. 

Another thing is that. Every other black hole has a dark matter halo. And a visible matter halo. In the case of a black hole, the key question is always this: which has the dominating effect: does the dominating effect come from the black hole or its halo? The only known fact is that none of the black holes interacts alone.  There is also a model of the center of the Milky Way. Involves structure. There is a group of black holes orbiting the supermassive gravity center. In some model. The massive pressure near the center of the Milky Way presses matter into a black hole, just before it falls into the middle of the Milky Way. 

The only thing that is sure. Is that. Dark matter and visible matter. Both can form a black hole.  If a black hole forms. In the dark matter bubble, or denser point of dark matter. That can cause a situation where the black hole turns more massive than it should. Gravitation is the only known interaction between dark and visible matter. 

“Some astronomers think the Milky Way’s center could be hiding something stranger than a supermassive black hole. In a new study, researchers argue that the object shaping the orbits of nearby stars might instead be an ultra-dense concentration of dark matter that creates nearly the same gravitational footprint as a black hole.” (ScitechDaily, The Center of Our Galaxy May Not Be a Black Hole)

“Their results, published in Monthly Notices of the Royal Astronomical Society (MNRAS), challenge the standard picture in which Sagittarius A* (Sgr A*) is a supermassive black hole that dominates the region’s gravity. The best-known evidence for that black hole interpretation comes from the S-stars, a group of stars that loop around the center at velocities reaching several thousand kilometers per second.” (ScitechDaily, The Center of Our Galaxy May Not Be a Black Hole)

"Instead of relying on a black hole, the international research team proposes a different explanation. They argue that a particular variety of dark matter composed of fermions, which are light subatomic particles, could organize itself into a distinctive structure consistent with observations of the Milky Way’s core.” (ScitechDaily, The Center of Our Galaxy May Not Be a Black Hole)

The energy level of those particles is very high. So those particles are more massive than particles outside the halo. And that means that. The black hole and its halo. Are both. Interact with their environment. So in larger-scale structures, the Milky Way. Just like other galaxies interact as an entirety. There are all stars, back holes, dust, and other things. Forming the massive gravitational entirety. The black hole interaction. It is much more complicated than just gravity that pulls objects inside it. 

The black hole halo. And its relativistic jet transports energy. Also in the opposite direction. We see that energy. As gamma- and x-rays. When a black hole sends energy to the galaxy’s outer halo. That energy puts a halo to shine. There is also the impact of radiation and particles that surround the galaxy. This impact point is similar to the heliopause. There are particles from the sun. That impacts the particle flows from other stars. Similar standing wave surrounds. galaxies, and when a relativistic jet impacts that structure, this structure sends energy into the center of that bubble or halo. This energy. It has a role in energy. 

And matter flows in the galaxy. That energy reflection pushes particles and other objects back to the galaxy’s center. And this is one of the reasons why there is a glowing bubble in the center of the galaxy. Mainly, that glow forms when the relativistic jet travels through that point. But in the same way. Energy that reflects from the galactic halo. Has a role in that thing. 


https://scitechdaily.com/the-center-of-our-galaxy-may-not-be-a-black-hole/


Sunday, January 4, 2026

Can antigravity be real?



"The gravitational behavior of the Earth around the Sun is not due to an invisible gravitational pull, but is better described by the Earth falling freely through curved space dominated by the Sun. The shortest distance between two points isn’t a straight line, but rather a geodesic: a curved line that’s defined by the gravitational deformation of spacetime. The notion of “distance” and “time” is unique for every observer, but under Einstein’s description, all frames of reference are equally valid, and the “spacetime interval” remains an invariant quantity." (Big Think, Ask Ethan: Why is there no such thing as antigravity?)

Theoretically, it is possible to create antigravity by putting particles into spin very fast. That spin binds energy from quantum fields around those particles. But then. If those particles spin, stop. They release energy that they bind during the spin. If. Those particles are things. That. Forms a gravity field, which makes the antigravity possible. 

Can antigravity be real? The answer is no. But theoretically, we can try to explain the theoretical model of antigravity. There is no such thing as negative mass or negative energy. But why is that thing? The model of gravity suggests that spinning particles. Form energy pothole that we see as gravity. This model suggests. That gravity forms when particles spin and bind energy from their environment. And then the other fields will fall to fill the hole that the spinning particle makes in the quantum field. This means that those fields pull. Particles. And other things with them. That thing makes the pothole, or causes the curvature in the spacetime. That. We know it as the gravity field. 




"An animated look at how spacetime responds as a mass moves through it helps showcase exactly how, qualitatively, it isn’t merely a sheet of fabric. Instead, all of 3D space itself gets curved by the presence and properties of the matter and energy within the Universe. Space doesn’t “change shape” instantaneously, everywhere, but is rather limited by the speed at which gravity can propagate through it: at the speed of light. The theory of general relativity is relativistically invariant, as are quantum field theories, which means that even though different observers don’t agree on what they measure, all of their measurements are consistent when transformed correctly." (Big Think, Ask Ethan: Why is there no such thing as antigravity?)

The antigravity can be the situation. Where. Those spinning particles stop spinning. That makes them release energy. That energy can be the antigravity, because gravity forms when spinning particles bind energy into them. And that means the antigravity is the opposite effect of those particles. In that case, the same particles that bind energy and form the gravity pothole while they spin. Simply. Release that energy. But can something like a black hole completely stop or change its direction? Normally, particles are spinning 1/2 rounds. 

When those particles are spun 1/2 round, they start to change their direction. That causes an effect. Those particles must release their energy at the point. That. They slow down. And. Start to turn. A particle releases photons or energy waves. 



"The way to make a realistic warp drive involves manipulating the energy field and the spacetime curvature of the region around a spacecraft. By compressing the space in front of you at the expense of rarifying the space behind you, it’s possible to shorten the distance between the point of origin and your destination. This requires some form of negative mass/energy to work, however."(Big Think, Ask Ethan: Why is there no such thing as antigravity?)

Like. Other wave movement types. The gravitational waves form in cases where the center of gravity releases or binds energy. When a particle’s spin changes or slows, it must release energy. So, when the gravity center, like a black hole, changes its spin speed, that forms interference in the fields around it. So the antigravity would be the effect that the spin of all particles in the gravity center stops. And sends the wave movement that the wavelength is as long as gravity waves. This kind of effect could theoretically fill that pothole. 

The thing is that if the particle has spin that is higher than one, that particle would turn invisible. So, we can think that the particles. That spin has no limit will be invisible. Because. Only cases. That. The particle sends a wave movement. Or photons make it visible. But a particle is invisible when it binds energy.  The thing that makes a black hole visible is the halo and transition disk.  That is when a black hole absorbs energy from around it. This means the energy level of those areas is extremely high. Sometimes the radiation level from those halos and material disks rises so high that those things push material away from the black hole.


https://en.wikipedia.org/wiki/Spin_(physics)

Tuesday, May 27, 2025

Quarks, gluons, and symmetry.


"A recent experiment led by Mississippi State physicist Dipangkar Dutta has shaken one of physics’ most reliable concepts: symmetry. Credit: Shutterstock" (ScitechDaily, Rethinking the Universe: New Findings Rewrite Rules of Subatomic Matter)


The new research breaks the rules of physics. When an electron collides with quarks, it will not always decay and reassemble symmetrically. That means there is a problem with symmetry in the quarks. The Pauli exclusion principle, which states that no two identical fermions can occupy the same quantum state in the same system, explains many aspects of the existence of atoms and subatomic particles.

Because those particle's energy levels are different. That difference causes energy flow. That keeps them in their entirety. 

If there are two identical fermions. That causes the quantum flash that pushes those particles away. When quarks decay they can reassemble themselves. That requires that both of those parts are in the same quantum field. 

That quantum field is like the bag that denies the quantum shadow, or quantum bridge fill. That quantum shadow pulls those quark's halves back together. But there seems to be a situation where when an electron hits quakes the quantum field fills that bridge. If a quantum field turns between parts of a decayed quark, that field denies their reassembly. 

There is also the possibility that if those decayed parts of the quarks spin oppositely that event turns the quantum field between those particles into a shape that looks like twisted fabric. That means the energy density or energy level between those particles rises so high, that they cannot cross that bridge. That is one of the most interesting things in modern physics. That helps researchers make models about the strong interaction. 

Because energy travels from quarks to gluons. Gluon aims for energy flow to the outside. Because energy travels from quark to gluon, that acts like a thermal pump. It keeps those quarks close to each other. The reason why gluons can bind quarks together is that it cannot get energy from emptiness. It collects that energy from the system where it exists. 





The idea is that quarks spin. The spinning quarks also bind energy into them. The problem is that those quarks sometimes release that energy. That happens when their energy level turns higher than their environment. The gluon is like a thermal pump that aims for energy that the quarks release. 

That means the gluon that is in the quantum shadow between quarks keeps the energy flowing in a certain direction and a certain way. Without gluons, the quarks release their energy symmetrically, and that energy flash pushes those quarks away from each other. The gluon's role in the system is to keep energy flow stable. Because it binds energy from the quark's quantum fields it pulls them into it. That thing causes a situation in which the outside energy starts to push those quarks into the form that we call hadrons. So energy flow between quarks keeps that structure in its form. 

The idea is that the gluon is an extremely fast-spinning particle. That is a little bit flat. That particle binds quantum fields from quarks into the kinetic energy. When quarks come close to each other there forms a quantum (or energy) shadow between them. When gluon spins in that energy shadow it binds energy. 

And deepens that quantum low pressure. This thing stretches those quark's energy fields. Then the fast-spinning gluon binds those fields into themselves. Then the gluon acts like a centrifugal plate that aims energy to the sides of it. Because gluon conducts energy out from the system it pulls those quarks together. Or, otherwise, we can say that outcoming energy pushes quarks near each other. 

If we use a superstring model with gluon that thing looks like the plate that is formed of the strings or wires. Or, otherwise, it looks like a flat whisk. Those wires, or superstrings throw quantum fields to the sides of that particle. The gluon allows the quantum spikes that the quarks stretch quantum field forms to touch the gluon. The gluon aims energy out from them. And that forms quantum low-pressure. 

The strong interaction is the thing that keeps protons and neutrons in their form. In those hadrons, the outcoming energy or quantum fields push quarks so that they can keep their formation in hadrons. That means there is so-called quantum low-pressure that keeps quarks in the forms of protons and neutrons. 

There are models where the gluon. The strong interaction transmitting particle spins between those quarks. That means gluon binds energy into itself. When gluon touches the quantum field around it binds that field into the kinetic energy. That energy pulls the quarks together. When gluon goes between quarks. It pulls energy from the quark's quantum fields. That thing makes those fields stretch. And the gluon simply conducts energy out from that point. 


https://scitechdaily.com/rethinking-the-universe-new-findings-rewrite-rules-of-subatomic-matter/


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


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


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


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

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