Should we understand gravity better?
Is dark matter exists or are we just misunderstand gravity? The fact is that we don't know anything about gravity. We don't know even is gravity an independent force or not. If gravity is an independent force or interaction that thing means that it should have ow transporter particle.
And the thing is that there is the theory that the graviton, the hypothetical transporter particle is pulling the string between objects. And then those strings would start to pull the objects together. So graviton would be like a gluon, the particle, which keeps the quarks in the protons and neutrons, and the question is could the graviton be the gluon, which only interacts in long distances. In some theories, the graviton is the mirror- or pair of gluons the transporter particle of the strong nuclear force, which keeps quarks in the neutrons and protons.
If we are thinking about that theory sharply. That theory claims that every single particle is containing graviton. So could we find graviton between quarks and gluons?
And this could mean that gluons have graviton pairs. Or could gluon itself be graviton? And graviton is the long-range gluon. But that is the pure theoretical thing. Nobody has seen a single graviton yet, and the existence of the graviton is purely a hypothetical thing.
But what if gravity is pushing force? The idea of this theory is that quantum fields are like water. If there is a hole or pit in the universe, the quantum fields will fill it like water. So in this version quantum fields or gravitons are pushing objects.
So if we are thinking this theory more accurately the object removes the quantum field from its position. In the place of the objects is a weaker quantum field than in other places in the universe. That weaker quantum field would be like the pothole in the universe. And the other objects are starting to fall in the effective area of that weaker quantum field. So the filling pothole of the quantum field would cause the effect, what is called gravity.
But what else the dark matter could be than just material? Dark matter interacts with visible material only by gravity And that interaction is the thing, that uncovers the existence of that mysterious thing, what just exists, but that is the only thing, what we know about that thing.
There are three versions of the possibility of the form of dark matter. Of course, dark matter could be the energy. But what else that thing could be?
1) Dark matter could be one or two independent versions of the material. And the reason why we cannot see that material is that the particles of dark matter have a different size than visible material. So the dark matter sends the radiation that cannot interact or induct itself to visible material. And the radiation that dark matter sends has so different wavelength than the radiation that visible material sends. This thing would be the reason that we cannot observe it and that dark radiation or wave movement cannot interact with visible material.
2) Dark matter is only the overenergetic material. In that case, the particles are traveling in the universe and the cosmic radiation will stress them. Because that material or particles cannot transfer the radiation anywhere, they would turn overenergetic material. And the microgravity fields of those particles would turn stronger. That means that the mass of those particles is higher than other particles around them.
3) Dark matter is pure gravitons. So there are flowing the graviton clouds around the universe. And those gravitons are invisible for radiation because their size is so different than other particle's size. Or in some other versions of the graviton theory, gravitons would be the quantum-size black holes, that are pulling wave movement in themselves. So the oscillation of those hypothetical quantum-size black holes could be the source of dark energy. Or one source of the dark energy, the mysterious force, which rips the universe in pieces.
But as you see every single recommendation for the form of dark matter is a purely theoretical thing. Before researchers are capturing dark matter particles, they cannot say anything sure about the dark matter.
()https://phys.org/news/2021-06-dark-real-misunderstood-gravity.html
https://en.wikipedia.org/wiki/Dark_energy
https://en.wikipedia.org/wiki/Dark_matter
https://en.wikipedia.org/wiki/Fundamental_interaction
https://en.wikipedia.org/wiki/Gluon
https://en.wikipedia.org/wiki/Graviton
Image:()https://phys.org/news/2021-06-dark-real-misunderstood-gravity.html
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