Showing posts with label quantum world. Show all posts
Showing posts with label quantum world. Show all posts

Sunday, June 8, 2025

Can dark matter stars, or "dark stars" exist?


"A team of astrophysicists has discovered three potential “dark stars” using the James Webb Space Telescope. These theoretical bodies, thought to be powered by dark matter particles, are much larger and brighter than our sun. If confirmed, they could significantly illuminate our understanding of dark matter, one of the most significant unresolved issues in physics. Furthermore, their existence could reconcile the discrepancy between the current standard cosmology model and the observation of large galaxies early in the universe." (ScitechDaily, Powered by Dark Matter: Webb Space Telescope Catches Glimpse of Possible First-Ever “Dark Stars")

It's possible that the JWST telescope found the first 3 dark matter-powered stars, or "dark star" candidates. If those dark stars, dark matter stars, or WIMP stars are the hypothetical weakly interacting massive particles, WIMP power proves the existence of the WIMPs, hypothetical dark matter particles. The existence of dark matter stars tells us that there can also be dark matter "planets". 

And maybe hypothetical Planet X or the Ninth planet is one of those dark matter stars or dark matter planets. If those stars get their energy from dark matter annihilation that proves that the WIMPs have their mirror-particles. But there is a possibility that “dark stars get their energy boost from the dark matter particle’s collisions or dark matter fusion. There is also the possibility that particles can wobble between visible and dark matter. 

Invisible stars, formed of dark matter, can seem very utopian things. But there are models and theories. If weakly interacting massive particles, WIMPs exist there is a possibility that the WIMP can create the superposition and entanglement with another WIMP. That makes the channel between those hypothetical dark matter particles that pulls them together. There is a possibility that the dark matter stars can turn the WIMPs into reality. But there is one problem. 

Those WIMP- or dark matter stars can send radiation that is invisible to our sensors. The WIMP stars could be detected from the very young universe. The thing is that there are so-called WIMP clumps or WIMP accumulations all around the universe. And that means those clumps can also explain the mysterious Planet X. In that model, there is a small dark matter accumulation. That explains the mysterious gravitational effect at the Kuiper Belt. 



"The James Webb Space Telescope spotted three objects that may be formed from dark matter particles annihilating one another. (Image credit: NASA/ESA)" (Space.com, Do fabled 'dark stars' actually exist? James Webb Space Telescope spots 3 candidates)

But then if those dark matter or WIMP stars existed in the young universe, where they go? The fact is that those dark matter accumulations didn't go anywhere. Visible matter covered those structures and the visible material's brightness covered those dark matter structures, or dark matter star's radiation below them. If those WIMP, or dark matter stars exist they can explain dark energy. If the dark matter stars exist they send energy through the universe in radiation, or wave movement that wavelength is the same as the diameter of the transmitting particle.

And the existence of the WIMPs can be the thing that can revolutionize physics. There is a possibility that WIMP particles can form similar structures as quarks make in mesons. Normally mesons are quite short-term particles; there most usually two quarks forming the bond. There is a possibility that if those quarks are turning in the right direction and their spin is high enough they wrap quantum fields around them so fast that they can keep each other in the same structure. 

If those particles are in quantum entanglement that double whirl keeps them in one form. The quantum entanglement is like a tube between those particles. The asymmetry in those energy whirls causes the energy that comes behind those particles to push them together. This thing can explain the WIMP stars or dark matter stars. The WIMP star is the gravity center that pulls other, visible particles at that place. That kind of quantum fusion where quarks impact each other can revolutionize our knowledge of energy. 

There is the possibility that the JWST telescope detected the first dark matter star or WIMP star in the universe. Or, the star that is the dark-mater powered. The dark matter interaction, if it exists, can boost the star's energy production. If there is dark matter fusion in that star, that energy can push energy to particles that this gravity center pulls around it. 

Or if those quantum channels make those, still hypothetical WIMP particle's impact turn smaller that makes small empty pockets in the quantum fields. And then those pockets can also pull visible particles together. That means those hypothetical dark matter reactions can boost the reactions and a gravity effect between visible particles. 


https://scitechdaily.com/powered-by-dark-matter-webb-space-telescope-catches-glimpse-of-possible-first-ever-dark-stars/


https://www.space.com/nasa-james-webb-space-telescope-stars-dark-matter


https://en.wikipedia.org/wiki/Dark_star_(dark_matter)


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


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



Tuesday, October 29, 2019

Why nothing is enough in the field of physics?

Why nothing is enough in the field of physics?

We could form this question in the form, "why scientists are looking for more and more smaller and high energy particles in the Universe"? Why we are creating more and more powerful systems, what can find smaller and smaller particles. And maybe we would someday find the point, where energy would get the "astral form", and that is the opposite for the form of quarks, and we can think that the physical form of atoms, electrons, and other fundamental particles is so-called "kinetic" or "crystallize", and the form of energy would be "quantum fog" or "astral", so sometimes somebody has asked, "is the material only the crystallized energy".

And annihilation reaction, where antimatter and matter would contact and all of their mass turn to energy are supporting that thing. So the material is only the kinetic version of energy, if we want to say this thing like that way.

The idea of those people is that they want to find the point, where the material is transforming the energy and the opposite way. If we could find out that point or gate, where the energy is turning to material, we could find something bigger than ever before. We know that somewhere in the quantum world is the extreme particle, what is turning to the energy, and if we would see that particle, we can simulate the opposite reaction. But what is the form of that particle?

Is it stable or is it like some kind of quantum version of "the elastic bound", what can move to another space and form to another? That would be the most interesting particle of the quantum Universe, what we can ever create, or rather saying, what we can ever find. Then we are facing another strange particle and that is gluon. That particle keeps quarks together, and sometimes the form or essence of the gluon is thought to be a key to see, what things are forming the quarks.

When we are thinking about the thing, what is called the "super spring", we must ask, is that thing the particle, what is mentioned at the beginning of this text. So if our super spring is the quantum version of elastic bound that means that this particle is like clew, what the super spring forms. And if that clew, what has name quark, would open, the super spring would slip to energy. And that thing would be very interesting.

So what would we need to observe this kind of case? The thing is that those super springs would not act like other fundamental particles. That makes problems for creating observation of those particles. So what kind of thing the "super spring" would be? The thing is that if the form of this thing is the wire, we must think, the reason, why this wire would turn to the clew and form the quarks?

Is there a tiny electric force, or force what effects a similar way with electricity, and pulls the wire to ball? And what is the role of gluons in that process? Are gluons some kind of small black holes, what can turn the super spring in the shape, what we are known as quarks? Those are things, that are waiting for answers in the thing, what we are known as material.

And then we must understand that we see material everywhere, but we don't know much about it or it's the deepest form. What is the point, when the material turns to energy or is there the final form, or is the material acting like melting crystal? This kind of thing is interesting when we are starting to research the final particle between material and energy.

Navier-Stokes equation can revolutionize engine design.

Navier-Stokes equation can revolutionize engine design.  The Navier-Stokes equation is solved. But the results are not confirmed. But. This ...