Publication | Open Access
Black hole perturbation in the most general scalar-tensor theory with second-order field equations: The odd-parity sector
153
Citations
35
References
2012
Year
Black Hole DynamicGeneric FormulasBlack Hole PerturbationGeneral Scalar-tensor TheoryEngineeringPhysicsBlack HoleGeneral RelativityTwistor TheoryQuantum Field TheoryGeometric RelativityQuantum Field Theory In Curved SpacetimeConformal Field TheoryGravity EffectsGravitation TheoryOdd-type Linear PerturbationsOdd-parity Sector
We perform a fully relativistic analysis of odd-type linear perturbations around a static and spherically symmetric solution in the most general scalar-tensor theory with second-order field equations in four-dimensional spacetime. It is shown that, as in the case of general relativity, the quadratic action for the perturbations reduces to the one having only a single dynamical variable, from which concise formulas for no-ghost and no-gradient instability conditions are derived. Our result is applicable to all the theories of gravity with an extra scalar degree of freedom. We demonstrate how the generic formulas can be applied to some particular examples such as the Brans-Dicke theory, $f(R)$ models, and Galileon gravity.
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