Spontaneous charge separation in accelerating relativistic plasmas
Abstract
The Stewart-Tolman effect posits that accelerating conductors exhibit both charge separation and rest-frame electric fields (``inertia of charge''), while the Ehrenfest-Tolman effect states that acceleration induces temperature gradients (``inertia of heat''). We study the interplay of these effects in thermodynamic equilibrium. Specifically, we derive from first principles a partial differential equation governing the electrothermal stratification of a fully ionized plasma in equilibrium under irrotational relativistic accelerations in curved spacetime. We then solve it in two settings: a plasma enclosed in a uniformly accelerated box, and a plasma shell suspended above a black hole horizon. The resulting electric fields are found not to depend on the electric conductivity of the medium.
Cite
@article{arxiv.2508.08936,
title = {Spontaneous charge separation in accelerating relativistic plasmas},
author = {Lorenzo Gavassino},
journal= {arXiv preprint arXiv:2508.08936},
year = {2025}
}
Comments
12 pages, 4 captioned figures, comments welcome!