Showing posts with label time. Show all posts
Showing posts with label time. Show all posts

Thursday, June 18, 2026

Time is not universal.



The time is not stable. Even in our solar system. Time runs differently on different planets. Clock runs faster on Mars than on Earth. The difference is minimal. But that causes problems with atom clocks. And that is the thing that makes problems for things like GPS on Mars. Same way. The massive stars cause time to move more slowly, for example, near Betelgeuse than near the Sun. In the same way, there are points in the universe. 

There is no time. The thing that makes time run slower on Earth. Than. On Mars are the quantum fields. The larger and heavier object. The Earth pulls quantum fields denser near Earth. Than Mars. And that causes the situation. The particles' evaporation is slower near Earth. These kinds of things matter in very high-energy and massive particles. But this raises a question: Is time an illusion? The quantum interaction that we see is a particle’s evaporation. Or particles turn into wave movement. This is one of the ways we see time. When we think about the ultimate objects. 

Black holes, we can say that there is a point. There is no time. Time depends on the speed. The photon that travels at the speed of light has no time. In the same way, the black hole’s event horizon is the point. There is no time. Time dilation means that the particle’s evaporation turns slower. In the speed of light. And in these cases, the escaping velocity is the same. 


As the speed of light. That means time is stopped. When escaping velocity. Turns higher than the speed of light. That turns particles younger. And if the escaping velocity is higher. Than the speed of light. The particle delivers photons. And that means. It turns into a wave movement. 

The particle. That is. On that point. Reaches energy stability. The particle receives as much energy as it releases. And that means that. The particle will not turn. Younger or older. If the particle’s spin is high enough. It could store more energy than it releases. And that will make that particle invisible. 

So, as long as particle packs quantum fields around it. It turns younger. But that thing makes it a black hole. The object that binds more energy than it releases. The idea of the Tipler cylinder. Or Tipler's time machine is simple. The cylinder that surrounds things like giant spaceships spins at the speed of light. That denies aging in that spaceship. But the problem is this. The Tipler’s cylinder just locks energy in the objects. That means the particles’ energy level stays stable. But the expansion of the universe causes a situation. 


There, the energy level around the cylinder decreases. And if the craft sometimes comes out of that cylinder. That thing can cause energy escape. That destroys the craft. So the expansion of the universe decreases its energy level. Or, it decreases the energy level of the visible energy. The expansion of the universe causes matter evaporation. 

Because it decreases the energy level of the quantum fields. This means that the expansion of the universe. Causes a situation. That matter turns into energy. And that is one determinant for time. But another determinant is this. We can lock time. We can turn particles younger. But can we make a time machine? If we want to travel to the future, we can create the Tipler cylinder. 

If the particle’s evaporation happens in the cosmic voids or outside the universe. That evaporation can be a source of dark energy. When particles send light quanta into cosmic voids. Or, outside the universe. Those light quanta travel faster than they should. When they impact denser or stronger quantum fields. 


They will send subquanta. That means that dark energy could be seen as some kind of Cherenkov radiation. Another thing is this. When a neutron travels out from the atom's core. Their existence remains about 15 minutes. Then down qurk turns. Into up quark sending W-boson.  This means that the down quark doesn’t turn into an electron. Itself. The other down quark. It forms a W-boson, and that sends an electron. The down quark turns into an up quark. And a neutron turns into a proton. 

Then neutrons turn into electrons, protons, and an antineutrino. This happens when quarks turn into those particles. There is a small possibility that the dark energy could be radiation.  That quarks send just before they turn into some other particles. The dark energy could be a result of radiation. That is sourced. in some extremely short-lived particle. 


That is a one-way time machine. But in the case that we want to travel to the past. We need time. That affects the space.  Does time affect space? We know that retrocausality is real. This means that information can travel from the future to the past. The retrocausality means a situation. That particle or information  seems to reach its goal. Before it is left from the beginning point. This means that the matter. Or photons, or electrons  that traveled through quantum fields. 

Like a cloud of ultra-cold radium atoms, aging slower than they should. This means that gamma-rays from those atoms pump energy into those photons or electrons. This doesn’t mean that those objects will not reach the goal before they leave from the start. That means that gamma-rays can slow down individual particles' aging. But if we want to create real retrocausality. We must realize the situation. Something that comes from the future exists from that point. This means that retrocausality. It is a very hard thing to prove. 

But if we think that the gravity field and escape velocity slow the aging of particles. We call that thing time dilation. Things like cosmic voids cause opposite time dilation. Their extremely low energy quantum fields. Let energy escape faster. From the particles. This means that time moves faster in cosmic voids. If the energy level outside the universe is lower. Than. It's in the universe. And there the particles evaporate immediately. There is a possibility that this kind of evaporation. The particles are the reason for the dark energy. 

When we think that the time is particle evaporation. That means time stops somewhere in the future. When all matter turns back. Into energy. That means that time is over. But otherwise, if time affects space. Not. Just matter. That causes a situation. That may be how black holes transport information back to the point. There it left. 


https://www.aol.com/physicists-discover-time-may-illusion-115100062.html


https://www.livescience.com/physics-mathematics/quantum-physics/time-might-be-a-mirage-created-by-quantum-physics-study-suggests


https://www.popularmechanics.com/science/a71526768/curved-time/

Sunday, May 17, 2026

Did time move more slowly just after the Big Bang?



The answer is one of the greatest paradoxes in history. The paradox is that. There was nothing there for us to compile this thing. Time moves fast or slow, only if we observe it from outside. This means that we can use the quantum model to explain that thing. If we are in the middle of the system, we cannot see it as an entirety. So if somebody asks,  how long was the second just after the Big Bang? The right answer is “second”. Time, or evaporation, was slower in the young universe. But in that case, we will compare it with the modern universe. But does that have any effect on the universe? Researching time is difficult from inside the universe. 

Reseachers found the most massive black holes in the universe. The hyper- or ultramassive black hole pair in the galaxy Abell 402-BCG. The mass of those bohemoths is about 60 billion suns. And they are on a trajectory that leads those black holes together. And that forms the unbelievable-size behemoth. The distance to that galaxy is 4,4 billion light-years. These kinds of objects are tools that can tell about the time. Those black holes pack matter and quantum fields around them. From such a large area that we can observe it. 

And then we must ask one question? Could there be time without dark matter or superstrings? The idea is that. The gravitational effect that we know as dark matter. It can make energy on the move. Dark matter is whirls in quantum fields. Without depending. Whether that thing has a particle form or not. That thing forms a situation where energy moves. And if we lose all energy, everything disappears. Outside energy is the thing. That pushes particles into their forms. 


The ultimate fate of the universe. It can form multiple smaller universes. 


So this causes an interesting idea. Of the ultimate fate of the universe. When the last black holes pull. The last matter and quantum fields inside it. This means that when that matter ends. Those black holes will explode. And maybe the universe starts to form again. This model is suitable for the form. That we know as “Big Silence”. 

This model is a hybrid between a “Big Crunch” and “Big Rip”. The Big Crunch means. The universe falls. Because of its own gravity. And Big Rip means that the expansion of the universe continues forever. In this third model, the black holes form the quantum dots into the entirety. And part of the universe condenses into those bohemoths. Then energy and matter end. And those black holes start to explode. If that is right, the universe forms the group of “baby universes”. 


Superstrings can play a big role in keeping energy in motion. 


There are two versions of the origin of the superstring. The cosmic tornado forms the matter. Theoretical model of the matter form. When those superstrings form the quarks. There are two models. One is that in the middle of a photon is a quantum-sized black hole. Or in another model, the photon focuses energy. Into the middle of it. 

When a photon spins around its horizontal axis. That forms a situation where the energy spark starts to spin. That forms the quantum tornado. This thing puts energy into motion. So what happens if those things don’t exist? The answer is that there is no energy movement. 

Or quantum-scale energy motion is far slower. That energy puts particles to shine. But if energy doesn’t move? That causes extremely fast energy escape from particles. There is a small paradox. That paradox is simple. If energy doesn’t move, it cannot escape from particles. So in that case. Everything just vanishes. Without energy, not even a photon can move. This is why gravity is very important. It puts energy into moving. 


https://www.astronomy.com/science/did-time-move-slower-right-after-the-big-bang/


https://www.sciencenews.org/article/largest-pair-black-holes-collision


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


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


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

Monday, August 11, 2025

Black holes, fractals, and G-field interaction.

 Black holes, fractals, and G-field interaction. 


"Illustration of two novel theories exploring dark matter origins through a mirror world and early universe horizon." (Rude Baguette, “Dark Matter May Come From A Mirror World”: Bold Theories Suggest Hidden Twin Universe And Particle Factory At The Edge Of The Young Cosmos)

There is a possibility that some conditions in black holes are similar to those in a hypothetical anti-universe. That means black holes can be the source of dark matter. But if that is true. That model requires. There is a small anti-universe, or an anti-universe-like space, in every black hole. And if the only thing that differs between the anti-universe and our universe is the direction of time, that means there can be a small anti-universe in the black holes. Time travels in the opposite direction in black holes. So, maybe there are anti-universe-type conditions, and maybe. Some part of dark matter, or mysterious gravitational effects, forms in black holes. 

The new interesting theory about the origin of dark matter in the anti-universe requires more thinking. The thing is that the dark matter formed in the anti-universe is somehow utopian. However, theoretically, there could be anti-universes or structures that behave like an anti-universe within our universe. Those places are black holes. Behind the event horizon, time should move backward. And that thing can form a small-sized mini-universe in the black hole. 

The problem is how those weakly interacting massive particles, WIMPs, hypothetical dark matter particles, can escape from the black holes? The black hole vaporization can cause those particles to escape from the black hole. All black holes are losing mass. During that thing, the black hole sends gravitational waves. So, there is a possibility. The gravitational waves form when hypothetical gravitons are left outside the event horizon. When a black hole loses its mass. The event horizon withdraws, and that causes particles like gravitons to be left outside it. 

Another way to think about the black hole vaporization is to think of the black hole as a whirl. That while it always interacts with its environment, as all other whirls do. That whirl causes friction in the medium between the whirl's internal and outside structure. That means the contact between those whirls and the outside environment causes small whirls that steal energy from the higher energy space or field. 



Above: A Fractal can introduce a model of how a black hole, or the whirl in the Gravity, or G-field, creates other whirls around it. When it interacts with the outside G-field. 

The idea is that. The G-field makes a whirl when it impacts with another G-field that moves in another direction. In the same way, water forms whirls into the points where water flows in opposite directions. 

So, if we think that time is also like wave movement, the time that moves backward behind the event horizon can form a whirl in time or 4th. Dimension in the point where time moves forward and backward. And that point is the black hole event horizon. 

When escape velocity turns higher than the speed of light. That means time turns to travel backwards. 

At the point where escape velocity reaches the speed of light, time stops. And then the time starts to travel in the opposite direction when escape velocity turns higher than the speed of light. So, there should be some kind of whirl in time. 

And if we think that a black hole is like a time arrow that moves back in time, that means it should push particles around it forward in time faster than otherwise. That means if we use the time arrow model for that case, the particle near the black hole's event horizon should turn "very light" so that it can fall to the future. That means the time arrow, or the arrow of time, should push particles in the opposite direction when it travels through the spacetime. But that is only a philosophical expansion of that model. 

In the black hole case, the whirl is like in a G-field. That whirl interacts with the G-field that is outside that black hole or dense gravity, or the G-field whirl. When those environments touch each other, that forms a whirl. And that means the event horizon is full of whirls that are lying. The whirl's center is horizontal to the event horizon. And they can drive energy out from a black hole.

In some other models, the event horizon is a layer that seems to be full of photons. Those photons might make it seem like a ball, made of car tyres. That means the gravitons can escape from the middle of those photons. Or they can send gravitational waves to gravitons outside the event horizon. The event horizon can also send whirls inside the event horizon, and that forms entropy in the black hole. 

The idea is that the G-field is an independent energy field. That G-field forms from gravity waves. In black holes, the G-field has a higher energy level than the G-field outside the black hole. That means the G-field travels outside the black hole. The G-field is one of the fields of four fundamental forces. Those forces are gravity, weak, and strong nuclear interactions. And electromagnetism. 

Those fields are independently interacting substances. And that means G-field can rise to a very high energy level, and that doesn't mean that other fields must rise their energy level. But if the G-field is at a very high energy level. Or its density is so high that it can push other fields from around it. In the same way, if the G-field spins fast enough, that thing doesn't let other fields in it. 

The whirl interacts like a wheel that lets material and wave movement travel through the black hole. There could be a superstring or energy string that travels through the center of the whirl. But then. Those whirls are pumping energy out from the black hole. The black hole can also form whirls that can separate from the event horizon. Those whirls are like small kugelblitz-black holes. There is a possibility. Those whirls just explode immediately after they separate from the event horizon. 


https://www.rudebaguette.com/en/2025/08/dark-matter-may-come-from-a-mirror-world-bold-theories-suggest-hidden-twin-universe-and-particle-factory-at-the-edge-of-the-young-cosmos/

https://scitechdaily.com/two-wild-new-theories-could-finally-explain-dark-matter/

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

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

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

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

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


Monday, August 4, 2025

The arrow of time.

 The arrow of time. 

The idea of the arrow of time, or time arrow, is when a high-energy beam or particle travels past some object or particle that transfers energy to that object. That should cause time dilation. But there are two things that make the time arrow unable to work in the modern universe. First, there is too much space in the universe. That means energy that the time arrow pumps to the object just travels away from the object immediately. 

That makes it impossible to see the time arrow and its effect on the object. The other thing is that if we think that time is like a river and we shoot an arrow against the flow, we know that this arrow makes the whirls. But those whirls are so short that we cannot detect them, and turbulence and chaos, and entropy are covering those things. So it's hard to detect the phenomenon that the arrow causes if there are rapids at that point. 

The black hole is one type of time arrow. There we could see the arrow of time. The reason for that is in the material and energy disk that will not let energy out from the black hole. In that case, the material disk acts as the time arrow, and that thing packs energy into the event horizon. So the black hole is like a tube where the high-energy structure pumps energy. Time dilation is also possible to see in places like particle accelerators. Their energy level is so high that researchers can see how the short-lived isotopes exist longer than they should. 

So, what should we do if we want to make a time machine? In this text, a time machine means a system that can travel to the past. We should make the tube or structure through which the laser, or some other particle beam, travel through a tube-shaped structure. The idea is that the tube cannot release its extra energy anywhere. 

The outside energy field must also press that structure into its form. And the beam that travels through the tube pumps energy into it. That thing can cause time dilation in the tube. That is one vision of the thing that bases the idea of the arrow of time. 

The idea is that time is energy. When a particle travels in the universe, it releases energy or receives energy. That means when the particle gets more energy than it receives, the particle turns younger. And if a particle receives energy, it turns older. The thing that makes time machines very hard to make is that the future is at a lower energy level than the past. If we make the time machine, there is a possibility that we will never be able to step out of that system. In the model where time is energy, the lower energy level in the future causes a situation where the energy flow out from the system turns so fast that it destroys the system. 

There is a possibility that the scientists of the future pack data into the balls. Then that researcher creates a black hole around those capsules. And sends information to the past. The system can be based on the spin of the nanotubes. When the capsule is at the right point in time, the system stops its spin. And that should make it possible to transport information through time. 

The idea is that all objects are in a gravitational pothole. That pothole means that all objects that have mass follow the present. The pothole forms in time dilation when spinning particles store energy in it. Or those particles turn the outgoing fields into the form of kinetic energy. When those spinning particles slow, they release their energy. And the present point in time reaches those objects. 


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


The black holes and time reverse.

 The black holes and time reverse. 

If we think that black holes travel in the opposite direction in time than other universes because the escape velocity in the event horizon is higher than the speed of light. We must realize that black holes can also give a model of why it's so hard to transmit data from the past to the future. The redshift outside the black hole’s event horizon is extreme. The black hole stretches light. And that means the black hole seems to be at a longer distance than it really is. The gravitational redshift is the thing that stretches space and time. But then. We can go inside the event horizon. 

And ask what makes particles so hard to escape from the black hole, we face an interesting thing. In the event horizon, the wavelength turns extremely short because the outgoing field impacts that information. But outside the event horizon, the gravity stretches the wave movement. 

When particles and wave movement come through the event horizon, that is the point where the escaping velocity reaches the speed of light. This means that for escaping the black hole, the particle must get a speed that is higher than the speed of light. 

The outgoing wave movement impacts particles that are just below the event horizon. There is a possibility that particles and wave movement start to rotate the center of the black hole just below the event horizon. And it's possible that those particles can reflect radiation that attempts to get out from the event horizon. The wavelength of the wave movement that tries to escape from the black hole becomes extremely short. The outgoing wave movement presses the incoming wave movement into the black hole. When the wave turns shorter, it turns higher. And there is the quantum show behind it. 

 But if some kind of radiation tries to escape from the event horizon, that thing faces an interesting effect. The wave that turns very short inside the black hole will stretch outside it. And the end of the wave is in the event horizon. That pulls energy out from that wave that falls back into the event horizon. But then we can see the event horizon. If the energy level of that point is higher than the energy level in the event horizon, that thing presses all particles back to the black hole. 


The shape of a black hole is the whirl or whirling pothole in the quantum fields or spacetime. That whirl can take information to the point where a black hole forms. 


Then we can go to the time travel paradox: why is it so hard to get information from the future to the past? 

The model goes like this. Time is the dimension that flows from the beginning of time to the ultimate end of time. The energy level in the future is lower than the energy level in the past. The reason why it's so hard to get information from the future is that. When information travels against the time flow in a wave form, that time flow will turn that wave shorter. So the information wave that comes from the future will be very short. The idea is the same as putting a serpentine to the river. 

From the upper river that is past the serpentine, it keeps its form or stretches. But if the serpentine tries to travel back to the upper flow, it turns short or it warps. If we connect that information wave to the higher energy particle, which allows the information to travel against time. We face one thing. That time flow will pull the serpentine straight. Another problem is that if an extremely high mass object is connected to information and travels in time flow, it’s possible that it turns into another black hole. And information cannot be reached until the black hole is vaporized. 

There is an interesting model that the hypothetical civilization at the end of time sends an information ball to the past. They create a black hole that travels to the past. That civilization will create massive data storage and then lock those archives into the black hole. That information travels to the beginning of time. The idea is that all black holes can travel in time. But they cannot create information from nowhere. They store information that they collect from their trip to the point where the black hole’s existence began. But the theoretical artificial black hole at the end of time will not include information that is naturally stored in it. But it can transport a library or archive to the past. 



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


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...