The generalization of the Periodic table about "dark matter"

19 July 2021, Version 1
This content is an early or alternative research output and has not been peer-reviewed by Cambridge University Press at the time of posting.

Abstract

The thesis is: the “periodic table” of “dark matter” is equivalent to the standard Periodic table of the visible matter once being entangled. Thus, it is to consist of all possible entangled states of the atoms of chemical elements as quantum systems. In other words, an atom of any chemical element and as a quantum system, i.e. as a wave function, should be represented as a non-orthogonal in general (i.e. entangled) subspace of the separable complex Hilbert space relevant to the system to which the atom at issue is related as a true part of it. The paper follows previous publications of mine stating that “dark matter” and “dark energy” are projections of arbitrarily entangled states on the “cognitive screen” of Einstein’s “Mach’s principle” in general relativity postulating that gravitational fields can be generated only by mass or energy.

Keywords

dark matter
dark energy
entanglement
Periodic table
separable complex Hilbert space

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