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Matter as a Flow of Random Elementary Events in the Context of Discrete Time

DOI: 10.4236/oalib.1103444, PP. 1-11

Subject Areas: Modern Physics

Keywords: Discrete Time, Heisenberg Algebra, Flow, Energy, Substitution of Frequency, Observability, Dark Matter

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Abstract

The paper concerns certain consequences of discrete time hypothesis including physical regularities of a particle representation in the form of a flow of elementary events. In the context of the proposed formal description, particle observability has been determined; dependence of observability on a particle energy value has been shown. In terms of the proposed approach, a statistical rationale was given to the relative amount of dark (unobservable) matter.

Cite this paper

Zaslavsky, A. (2017). Matter as a Flow of Random Elementary Events in the Context of Discrete Time. Open Access Library Journal, 4, e3444. doi: http://dx.doi.org/10.4236/oalib.1103444.

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