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Rotating black hole mimicker surrounded by the string cloud

Yi YangSchool of Mathematics and Statistics, Guizhou University of Finance and Economics, Guiyang 550025, ChinaDong LiuCollege of Physics, Guizhou University, Guiyang 550025, ChinaAli ÖvgünPhysics Department, Eastern Mediterranean University, Famagusta, 99628 North Cyprus via Mersin 10, TurkeyGaetano LambiaseDipartimento di Fisica “E.R Caianiello”, Università degli Studi di Salerno, Via Giovanni Paolo II, 132–84084 Fisciano (SA), ItalyZheng‐Wen LongCollege of Physics, Guizhou University, Guiyang 550025, China
2024en
ABI

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Traversable wormholes and regular black holes usually represent completely different scenarios. But in the black bounce spacetime they can be described by a same line element, which is very attractive. Furthermore, the black hole photos taken by EHT show that black holes have spin, so spin is an indispensable intrinsic property of black holes in the actual Universe. In this work, we derive a rotating black hole mimicker surrounded by the string cloud (SC), which can be interpolated to represent regular black hole spacetime and traversable wormhole spacetime. We investigate the effect of the spin $a$ and SC parameter $L$ on the observables (shadow radius ${R}_{s}$ and distortion ${\ensuremath{\delta}}_{s}$) and energy emission rate of the black hole mimicker surrounded by the SC. We find that shadow for this spacetime is very sensitive to the $L$, i.e., the SC parameter can significantly increase the boundary of the shadow.

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