Probing horizon scale quantum effects with Love
arXiv:2107.07258 · doi:10.1088/1361-6382/ac9ae4
Abstract
Future gravitational wave detectors have been projected to be able to probe the nature of compact objects in great detail. In this work, we study the potential observability of the small length scale physics near black hole horizon with the tidal deformability of the compact objects in an inspiraling binary. We find that it is possible to probe them with extreme mass ratio inspirals. We discuss how the quantum effects can affect the gravitational wave observables. This as a consequence is bound to shape our understanding of the quantum scale near the horizon.
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Cited by in corpus (5)
- Black hole perturbation theory and multiple polylogarithms
- Extreme Love in the SPA: constraining the tidal deformability of supermassive objects with extreme mass ratio inspirals and semi-analytical, frequency-domain waveforms
- Towards establishing the presence or absence of horizons in coalescing binaries of compact objects by using their gravitational wave signals
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