Could many black holes and neutron stars orbit each other, never give off light, be stable dark and massive?

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My Comment: Could many black holes and neutron stars orbit each other, never give off light, be stable dark and massive?

Do these stars give off gravitational radiation when they do this? It might be long wavelength and weak and not in the right direction, but it follows very specific orbit and directions, that can be predicted – based on precise timing, location and characteristics.

Because you can see these stars and closely monitor, are there any interaction events that could be gravitationally detected? Monitoring and recording continuously the events could be studied again and again. At these distances and sizes, the “near the speed of light and gravity” close encounters might be many diameters apart but still close so black holes that are accumulating but not consolidated could have these stable clusters of stars and very heavy black holes.

The whole universe can fit inside a Schwarzschild radius where the escape velocity is the speed of light, and the mass is the mass of the universe.

And if so, then was the big bang simply a gluon condensation nova when all those heavy dense star regions merged to where the density exceeded the critical point of gluon superfluid and released the heat of crystallization of gluons?  I think matter and fields are still liquid gluon. We don’t have good names for this. But that is what I have been thinking would be worth modeling one day.

Are black holes giving off gluon radiation as gluon gravitation radiation? As GeV TeV PeV and larger? Could those dense dark regions be the source of some cosmic rays? And contain galaxies worth of energy that only seeps out at gluon frequencies?

[ I wonder if inside matter, could free electrons or muons loop like that and give off Cherenkov radiation but in a tight beam or spray? In every day matter occasional close encounters by tunneling? Or deliberately? What if gravity is really incoherent sprays of high frequency radiation – mostly in the UV to soft x-ray region at the surface of the earth?]

Those huge empty parts of the universe could be dense dark regions filled with neutron stars and black holes. And the true universe is far larger and far older by many orders of magnitude than what we see with visible and electromagnetic radiation and our little “big bang”.

Richard Collins, The Internet Foundation


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They use way too much stuff because they are spending someone else’s money. That whole mess needs to be on a tiny chip. Then he says, yes, the real computer is that chip not that huge device.

Richard K Collins

About: Richard K Collins

The Internet Foundation Internet policies, global issues, global open lossless data, global open collaboration


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