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Einstein gravity coupled to a massless <i>conformal</i> scalar field in arbitrary space-time dimensions

Basilis C. XanthopoulosDepartment of Physics, University of Crete, Iraklion, GreeceThanassis E. DialynasDepartment of Physics, University of Crete, Iraklion, Greece
1992en
ABI

Аннотация

For space-times of arbitrary dimensionality two transformations are obtained that applied to any solution of the Einstein equations coupled to a minimally coupled scalar field construct a solution of the Einstein equations coupled to a conformal scalar field. The transformations are conformal for the metrics and algebraic for the reparametrization of the scalar fields. With these generating techniques static, spherically symmetric, asymptotically flat solutions of the Einstein-conformal scalar field equations in arbitrary space-time dimensions are obtained. Black hole solutions are systematically searched for and it is found that the only (nonvacuum) one exists in four space-time dimensions. This is the Bekenstein black hole for gravity coupled to a conformal scalar field.

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