English

The Universe as a Nonuniform Lattice in Finite-Volume Hypercube. I.Fundamental Definitions and Particular Features

High Energy Physics - Theory 2009-11-10 v1

Abstract

In this paper a new small parameter associated with the density matrix deformation (density pro-matrix)studied in previous works of the author is introduced into the Generalized Quantum Mechanics (GQM), i.e. quantum mechanics involving description of the Early Universe. It is noted that this parameter has its counterpart in the generalized statistical mechanics. Both parameters offer a number of merits: they are dimensionless, varying over the interval from 0 to 1/4 and assuming in this interval a discreet series of values. Besides, their definitions contain all the fundamental constants. These parameters are very small for the conventional scales and temperatures, e.g. the value of the first parameter is on the order of 1066+2n\approx 10^{-66+2n}, where 10n10^{-n} is the measuring scale and the Planck scale 1033cm\sim 10^{-33}cm is assumed. The second one is also too small. It is demonstrated that relative to the first of these parameters the Universe may be considered as a nonuniform lattice in the four-dimensional hypercube with dimensionless finite-length (1/4)edges. And the time variable is also described by one of the above-mentioned dimensions due to the second parameter and generalized uncertainty relations in thermodynamics. In this context the lattice is understood as a deformation rather than approximation.

Keywords

Cite

@article{arxiv.hep-th/0312312,
  title  = {The Universe as a Nonuniform Lattice in Finite-Volume Hypercube. I.Fundamental Definitions and Particular Features},
  author = {A. E. Shalyt-Margolin},
  journal= {arXiv preprint arXiv:hep-th/0312312},
  year   = {2009}
}

Comments

15 pages, no figures