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Universal bounds on the size of a black hole

Published 31 Dec 2019 in gr-qc and hep-th | (2001.00027v3)

Abstract: For static black holes in Einstein gravity, if matter fields satisfy a few general conditions, we conjecture that three characteristic parameters about the spatial size of black holes, namely the outermost photon sphere area Aph,outA_{\mathrm{ph,out}}, the corresponding shadow area Ash,outA_{\mathrm{sh,out}} and the horizon area AHA_{\mathcal{H}} satisfy a series of universal inequalities 9AH/4≤Aph,out≤Ash,out/3≤36πM<sup>29A_{\mathcal{H}}/4\leq A_{\mathrm{ph,out}}\leq A_{\mathrm{sh,out}}/3\leq 36\pi M<sup>2, where MM is the ADM mass. We present a complete proof in the spherically symmetric case and some pieces of evidence to support it in general static cases. We also discuss the properties of the photon spheres in general static spacetimes and show that, similar to horizon, photon spheres are also conformal invariant structures of the spacetimes.

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