Showing posts with label quarks. Show all posts
Showing posts with label quarks. Show all posts

Monday, September 18, 2023

Dark matter and gravitons are the biggest mysteries in the universe.

    Dark matter and gravitons are the biggest mysteries in the universe. 


Could an extremely small primordial black hole that is smaller than gluon be the source of gravitational radiation and gravitational waves? 


If a graviton is an extremely small primordial black hole. That explains dark energy. The atom-size or smaller black holes can be stable. If they get enough energy. Those small black holes interact similar way as the larger black holes. And there are energy beams also in those small black hole's poles. The energy that leaves those poles could be the thing called dark energy. 

If those small black holes are between quarks and gluons they could send radiation into both particles. The pushing radiation that comes out from primordial black holes would impact into quark and gluon. There those particles will take that energy into their quantum field. 

When those quarks and gluons send radiation that they get from that primordial black hole back there is forming a channel where a larger energy beam covers smaller but higher energy beam. So that primordial back hole would be in the tunnel. Where it sends radiation into that quark and gluon. Because gluon is smaller than quark lots of radiation that comes from quarks travels through the gluon. 



Can dark matter made of gravitons? The answer is that nobody knows. The graviton is a hypothetical particle. That could be the link between the fourth- and the third dimension. 


The fourth dimension is the energy level where 3D material cannot interact with 4D material. So graviton could be the hole between energy levels or spaces. In some theories hypothetical graviton is an extremely small black hole, that brings energy from a higher dimension. 

A black hole is an object between 4D and 3D worlds. And graviton would be the extremely small black hole. But in some other models, the graviton could be a whirl- or spiral-looking gravitational field. So the graviton would be a virtual particle. 

The idea is this: a black hole pulls material and radiation in it. During that process, the black hole loads that material with a very high energy level. Then there is material that falls from the fourth dimension. And when those two materials are impacting the energy travels from higher energy material into lower energy particles. And that energy flow causes gravitational radiation. 

The thing is that dark matter will not probably form purely gravitons. But dark matter involves an element that makes gravitation interact also between visible and dark matter. So there could be gravitons also in dark matter. That gravitational interaction tells that there is something that causes the gravitational effect, but that thing doesn't interact in any other way. 


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


https://scitechdaily.com/understanding-the-mysteries-of-the-cosmos-new-clues-to-dark-matter-from-primordial-black-holes/


https://scitechdaily.com/primordial-black-holes-the-size-of-an-atom-what-new-experimental-evidence-suggests/



Monday, November 22, 2021

The new bizarre Wigner crystal is made purely of electrons.

   

 The new bizarre Wigner crystal is made purely of electrons. 


The new large-size Wigner crystal is made of pure electrons. That kind of structure can make it possible to create a new type of time crystals. The time crystals are the thing that is the "quantum-size perpetual motion machine".  The atoms are in repetitive movement in time crystals. 

Which means the energy is surrounding through the atom row. And then it would return to the quantum field that surrounds the atom row which sways back and forth. Making that quantum perpetual machine real the system requires a minimum energy level. 

The thing is that the time crystal can transfer and store data in a quantum computer. But that thing can also use to create zero-point energy. The outcome radiation will increase the energy level of the atoms in the time crystals. 

And that energy can transfer to the Bose-Einstein condensate. But the time crystal can also be used to load electrons to storage. And the electron-based Wigner is one of the most fundamental electric storage in history. 

But the thing is that the Wigner crystal that is made by using only electrons is stopped electricity. That thing can make it possible to create an extremely high energetic battery. If the electrons are stored in the flowing Wigner crystal they can conduct to the electric circuit or particle accelerators. 

There are two ways to increase the speed of the electrons in the electric wire. The first is to increase the number of released electrons. And the second one is to connect the object where is a loss of electrons to the electric wire.  When some atoms are losing electrons that means they are traveling away from it. 

When electrons are leaving their atom. They are leaving a hole in the electron core. The other electrons would fill those places in the electron cores. The flow of electrons and electricity is based on that phenomenon. If the flowing electrons in that pure electron Wigner crystal are surrounded with positive ions the electrons are traveling to the cores of those ions. 


This new Wigner crystal can benefit from the new type of motor and ultra-powerful acoustic solutions. 


If we would make the Wigner crystal by using only electrons. That thing can raise the speed of sound higher than it's in the neutron stars. And that system can make the new type of motors possible. When the soundwave travels through that material it releases its kinetic energy to the air while it slows its speed. 

The speed of sound is increasing when the particles of the material are turning smaller. The metallic hydrogen would make the ultimate membrane for increasing the speed of soundwaves. But if the membrane is made by using protons or neutrons that thing can make it possible to increase the speed of sound to an extreme level. 

When we are thinking about the possibility to send soundwaves through metallic hydrogen. That thing means when the soundwaves would face atmosphere. It would slow and release their energy as in the form of the blast. 

The speed of sound could be 180 000 km/s in the neutron star. But it could be higher in the Wigner crystal. The reason for that is that the electrons are smaller than the neutrons. And the top of the speed of sound would be in the quark material. If somewhere in the star that is formed of the quarks the speed of sound would be even higher in that star than in neutron stars. 

When we think about the speed of sound inside a neutron star it's 60% of the speed of light. If we would make the extremely thin.  And at the same thick material that has the same density as neutron stars. There is the possibility to make the soundwave that travels at extremely high speed. 

The idea is that. There is made the neutron membrane by using neutrons that are pushed together by using electromagnetic fields. Or two Wigner crystals. Then the soundwave would send through that structure. The speed of sound would be extreme when it strikes to air. And when it slows it releases an extremely high energy level. 

That kind of system where the connected neutrons are increasing the speed of sound. Can use as jet engines in the air. But that thing can use to create extremely devastating weapons. Making this thing real there must make a layer where the material is similar to neutron stars. 


https://www.quantamagazine.org/physicists-create-a-bizarre-wigner-crystal-made-purely-of-electrons-20210812/


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


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


https://thoughtsaboutsuperpositions.blogspot.com/

Tuesday, December 19, 2017

One of the weirdest particle in the universe: The quantum star


Picture 1

Kimmo Huosionmaa

In the universe is a star, so weird that it can almost make black holes look like boring. This star is so-called “grey hole” or quark star, what is the end of life of the star, what is too heavy to become the neutron star but too light to become a neutron star, when the nuclear reactions inside the star have been ended. In this star type the neutrons were crushed as the quarks, but the gravity is not strong enough to make the black hole. The photons can escape from this tiny piece surface, but the escaping speed is near the speed of the light, and that slows the photons very much.

This kind of star is smaller than the neutron star, and its gravity is more massive than neutron stars ever have. Those quark stars might look like small asteroids, and in some science fiction scenes, the spacecraft will make mistake and lands on that little star, what is mistakenly thought as the asteroid. The massive gravitation on that small star surface makes that object look like stoned, because the time on the surface of that object will slower, and there might be nuclear reactions on the quark stars surface.


Those reactions cause the reason for the gas and dust will fall in the surface of that star, and the massive gravitational field will start to press them down. And in this case, there will be high energy nuclear reactions on the surface of that star. In this scenario, the escaping speed from the surface of that star is 99% of speed of light, and in that case, those flares and things, what will happen on the surface of that piece looks like stoned, because the time will run slower on the surface of that star than in another universe.


The quark stars are the weirdest objects in the universe. And in some cases, that kind of star will get in the cosmic gas cloud, and then it will start symmetrically pull gas on its surface, and the result might be the blue giant, what is larger than our solar system. The pressure of the gas caused the massive gravity of the quark star, and that phenomenon will cause the massive energy production inside that massive star. The fallen material will grow the mass of quark star and sooner or later it will collapse as the black hole.


New autonomous task units are entering service.

"The deal will create much-needed competition for the Department of War acquisition process. (Representational image)" (Interestin...