English

Charged Boson Stars and Vacuum Instabilities

Astrophysics 2019-08-17 v1 General Relativity and Quantum Cosmology

Abstract

We consider charged boson stars and study their effect on the structure of the vacuum. For very compact particle like ``stars", with constituent mass mm_{*} close to the Planck mass mPlm_{Pl}, i.e. m2=O(αmPl2)m_{*}^{2} = {\cal O} (\alpha m_{Pl}^{2}), we argue that there is a limiting total electric charge ZcZ_c, which, primarily, is due to the formation of a pion condensate (Zc0.5α1eZ_{c} \simeq 0.5\alpha^{-1}e, where α\alpha is the fine structure constant and ee is the electric charge of the positron). If the charge of the ``star" is larger than ZcZ_c we find numerical evidence for a complete screening indicating a limiting charge for a very compact object. There is also a less efficient competing charge screening mechanism due to spontaneous electron-positron pair creation in which case Zcα1eZ_{c} \simeq \alpha^{-1}e. Astrophysical and cosmological abundances of charged compact boson stars are briefly discussed in terms of dark matter.

Keywords

Cite

@article{arxiv.astro-ph/9305014,
  title  = {Charged Boson Stars and Vacuum Instabilities},
  author = {P. Jetzer and P. Liljenberg and B. -S. Skagerstam},
  journal= {arXiv preprint arXiv:astro-ph/9305014},
  year   = {2019}
}

Comments

latex,29p,9 figs not included can be sent by fax on request,ITP 92-24,ZU-TH-38/92