English

Charge-Confining Gravitational Electrovacuum Shock Wave

High Energy Physics - Theory 2015-06-17 v1 General Relativity and Quantum Cosmology

Abstract

In previous publications we have extensively studied spherically symmetric solutions of gravity coupled to a non-standard type of non-linear electrodynamics containing a square root of the ordinary Maxwell Lagrangian (the latter is known to yield QCD-like confinement in flat space-time). A class of these solutions describe non-standard black holes of Reissner-Nordstroem-(anti-)-de-Sitter type with an additional constant radial vacuum electric field, in particular, a non-asymptotically flat Reissner-Nordstroem-type black hole. Here we study the ultra-relativistic boost (Aichelburg-Sexl-type) limit of the latter and show that, unlike the ordinary Reissner-Nordstroem case, we obtain a gravitational electrovacuum shock wave as a result of the persistence of the gauge field due to the "square-root" Maxwell Lagrangian term. Next, we show that this gravitational electrovacuum shock wave confines charged test particles (both massive and massless) within a finite distance from its front.

Keywords

Cite

@article{arxiv.1310.1558,
  title  = {Charge-Confining Gravitational Electrovacuum Shock Wave},
  author = {Eduardo Guendelman and Emil Nissimov and Svetlana Pacheva},
  journal= {arXiv preprint arXiv:1310.1558},
  year   = {2015}
}

Comments

LaTeX, 16 pages

R2 v1 2026-06-22T01:41:08.830Z