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Sub-atomic constraints on the Kerr geometry of GW150914

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arxiv 2108.08823 v2 pith:7RNVPGNP submitted 2021-08-19 gr-qc astro-ph.HE

Sub-atomic constraints on the Kerr geometry of GW150914

classification gr-qc astro-ph.HE
keywords kerrobjectgeometrygw150914blackholemodesconstraints
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We obtain stringent constraints on near-horizon deviations of a black hole from the Kerr geometry by performing a long-duration Bayesian analysis of the gravitational-wave data immediately following GW150914. GW150914 was caused by a binary system that merged to form a final compact object. We parameterize deviations of this object from a Kerr black hole by modifying its boundary conditions from full absorption to full reflection, thereby modeling it as a horizonless ultracompact object. Such modifications result in the emission of long-lived monochromatic quasinormal modes after the merger. These modes would extract energy on the order of a few solar masses from the final object, making them observable by LIGO. By putting bounds on the existence of these modes, we show that the Kerr geometry is not modified down to distances as small as $5.8 \times 10^{-19}$ meters away from the horizon. Our results indicate that the post-merger object formed by GW150914 is a black hole that is well described by the Kerr geometry.

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Cited by 1 Pith paper

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  1. Model-agnostic search of gravitational wave echoes in LVK data

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    A multi-detector phase-marginalized echo search finds no statistically significant long-lived quasinormal-mode echoes in GW150914, GW231226, and GW250114, and sets 90% upper limits on their network SNR and amplitude.