AdS Monopole Black Hole and Phase Transition
Abstract
We study the Einstein-SO(3)Yang-Mills-Higgs system with a negative cosmological constant, and find the monopole black hole solutions as well as the trivial Reissner-Nordstr\"om black hole. We discuss thermodynamical stability of the monopole black hole in an isolated system. We expect a phase transition between those two black holes when the mass of a black hole increases or decreases. The type of phase transition depends on the cosmological constant as well as the vacuum expectation value v and the coupling constant λ of the Higgs field. Fixing λ small, we find there are two critical values of the cosmological constant cr (1)(v) and cr(2)(v), which depend on v. If cr(1)(v)< (<0), we find the first order transition, while if cr(2)(v)<< cr(1)(v), the transition becomes second order. For the case of b(v)<< (2)(v), we again find the first order irreversible transition from the monopole black hole to the extreme Reissner-Nordstr\"om black hole. Beyond b(v), no monopole black hole exists. We also discuss thermodynamical properties of the monopole black hole in a thermal bath system.
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