English

On a nonlinear model of the localized vacuum hypothesis, for solving the cosmological constant problem

Pattern Formation and Solitons 2019-07-19 v3

Abstract

A new model of oscillators was suggested, in which an oscillating particle in the minimum energy state has a nonzero velocity. A system consisting of a point material particle and a scalar field described by the nonlinear Klein-Gordon equation has been considered. It has been shown that, when taking into account relativistic effects, in the case of small rest masses of a particle an energy minimum at zero velocity is impossible for such a particle. It is showed that the behavior of a field in such a system is not stationary and is characterized by the presence of waves emitted and absorbed by the system in the minimum energy state. The system properties having being analyzed, a concept of the local vacuum was suggested; it was showed that the local vacuum hypothesis is useful in solving the cosmological constant problem.

Keywords

Cite

@article{arxiv.1907.02781,
  title  = {On a nonlinear model of the localized vacuum hypothesis, for solving the cosmological constant problem},
  author = {Rishat Salimov},
  journal= {arXiv preprint arXiv:1907.02781},
  year   = {2019}
}