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Quantum Effects in Galileon Black Holes

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arxiv 1803.05489 v2 pith:37NPSTCW submitted 2018-03-14 gr-qc hep-th

classification gr-qchep-th
keywords blackgalileonholeboundcouplingderivativehorizonpotential
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Using the Wentzel-Kramers-Brillouin (WKB) approximation we study the formation and propagation of quantum bound states in the vicinity of a Galileon black hole. We show that for given ranges of black hole horizon radii and of the derivative coupling which appears in the metric of the Galileon black hole, a Regge-Wheeler potential containing a local well is formed. Varying the strength of the derivative coupling we investigate the behaviour of the bound states trapped in the potential well or penetrating the horizon of the Galileon black hole.

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  1. Formation of Bound States in Quintessence Alternative Theories

    gr-qc 2025-06 conditional novelty 4.0 of 10

    Bound states of scalar fields exist outside quintessence-dressed AdS black holes for sufficiently large |w| or angular momentum, and quintessence alters the Hawking temperature so that large black holes radiate less.

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