Static Equilibria of Charged Particles Around Charged Black Holes: Chaos Bound and Its Violations
Qing-Qing Zhao, Yue-Zhou Li, H. Lu

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Abstract
We study the static equilibrium of a charged massive particle around a charged black hole, balanced by the Lorentz force. For a given black hole, the equilibrium surface is determined by the charge/mass ratio of the particle. By investigating a large class of charged black holes, we find that the equilibria can be stable, marginal or unstable. We focus on the unstable equilibria which signal chaotic motions and we obtain the corresponding Lyapunov exponents . We find that although approaches universally the horizon surface gravity when the equilibria are close to the horizon, the proposed chaotic motion bound is satisfied only by some specific black holes including the RN and RN-AdS black holes. The bound can be violated by a large number of black holes including the RN-dS black holes or black holes in Einstein-Maxwell-Dilaton,…
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