English

Neutron oscillations for solving neutron lifetime and dark matter puzzles

General Physics 2020-09-04 v9

Abstract

A model of nnn-n' (neutron-mirror neutron) oscillations is proposed under the framework of the mirror matter theory with slightly broken mirror symmetry. It resolves the neutron lifetime discrepancy, i.e., the 1% difference in neutron lifetime between measurements from "beam" and "bottle" experiments. In consideration of the early universe evolution, the nnn-n' mass difference is determined to be about 2×1062\times 10^{-6} eV/c2^2 with the nnn-n' mixing strength of about 2×1052\times 10^{-5}. The picture of how the mirror-to-ordinary matter density ratio is evolved in the early universe into the observed dark-to-baryon matter density ratio of about 5.4 is presented. Reanalysis of previous data and new experiments that can be carried out under current technology are discussed and recommended to test this proposed model. Other consequences of the model on astrophysics and possible oscillations of other neutral particles are discussed as well.

Keywords

Cite

@article{arxiv.1902.01837,
  title  = {Neutron oscillations for solving neutron lifetime and dark matter puzzles},
  author = {Wanpeng Tan},
  journal= {arXiv preprint arXiv:1902.01837},
  year   = {2020}
}

Comments

See arXiv:1902.03685 for application in stars, arXiv:1903.07474 for ultrahigh energy cosmic rays, arXiv:1904.03835 for baryon asymmetry, and arXiv:1906.10262 for CKM and tests