Sharp bounds on the critical stability radius for relativistic charged spheres
Abstract
In a recent paper by Giuliani and Rothman GR, the problem of finding a lower bound on the radius R of a charged sphere with mass M and charge Q<M is addressed. Such a bound is referred to as the critical stability radius. Equivalently, it can be formulated as the problem of finding an upper bound on M for given radius and charge. This problem has resulted in a number of papers in recent years but neither a transparent nor a general inequality similar to the case without charge, i.e., M≤ 4R/9, has been found. In this paper we derive the surprisingly transparent inequality M≤R3+R9+Q23R. The inequality is shown to hold for any solution which satisfies p+2pT≤, where p≥ 0 and pT are the radial- and tangential pressures respectively and ≥ 0 is the energy density. In addition we show that the inequality is sharp, in particular we show that sharpness is attained by infinitely thin shell solutions.