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SwiftLion ago

Here's the problem: if you calculate that the universe is holographic in nature, you still need "dark matter" to account for the fact that you can only observe 0.1x as much matter as is needed to produce our universe's behavior.

The holographic principle is the "old and busted" in this area. This theory suggests that information is held in spacetime itself, and the "weight" of that information provides the force usually ascribed to "something real that we just totally can't observe"--unproved, unobserved "dark matter".

https://m.phys.org/news/2016-11-theory-gravity-dark.html

So, all in all, you have a nice idea. But your hypothesis still requires that nine-of-ten particles are magic, weakly interacting, hard to observe particles of "dark matter".

d8_thc ago

So this isn't my theory by a long shot - it's by a man named Nassim Haramein

Here's his Ted Talk:

https://www.youtube.com/watch?v=xJsl_klqVh0

However, dark matter is no longer necessary in this view.

Because spin (torsion) has been added to the Einstein field equations, you no longer need dark matter to explain the extra rotational behavior of galaxies. Since matter is spinning space, you get a lumineferous aether without violating the Michaelson Morley experiments.

His theoretical research on the topic of the magnetohydrodynamics of astrological and cosmological plasma phenomena was first published in his 2008 paper (with Elizabeth Rauscher) “Scale Unification: A Universal Scaling Law”. In this paper he and Rauscher elucidate a beautiful universal scaling law that shows how fractal self-similarity is found at all scales of spinning structures in the universe, and explain, “In a spacetime which incorporates a source of angular momentum in the stress energy tensor … galactic structures … may be best described by magnetohydrodynamics driven by the structure of spacetime itself.” He and Rauscher then explore cosmological magnetohydrodynamics with deeper mathematical rigor in the paper “Collective Coherent Oscillation Plasma Modes in Surrounding Media of Black Holes and Vacuum Structure – Quantum Processes with Considerations of Spacetime Torque and Coriolis Forces” (2010). Here they find that the inclusion of torque and Coriolis in Einstein’s field equations is sufficient to explain the motion of large cosmological scale structures such as galaxies and galactic clusters, showing that it is unnecessary to resort to some new theoretical particle (such as the putative WIMPs).