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Impact of a plasma on the relaxation of black holes

Enrico Cannizzaro1,2, Thomas F. M. Spieksma2, Vitor Cardoso2,3,4, and Taishi Ikeda2

Phys. Rev. D 110, L021302 – Published 8 July, 2024

DOI: https://doi.org/10.1103/PhysRevD.110.L021302

Abstract

Our Universe is permeated with interstellar plasma, which prevents propagation of low-frequency electromagnetic waves. Here, we show that two dramatic consequences arise out of such suppression; (i) if plasma permeates the light ring of a black hole, electromagnetic modes are screened entirely from the gravitational-wave signal, changing the black hole spectroscopy paradigm; (ii) if a near vacuum cavity is formed close to a charged black hole, as expected for near equal-mass mergers, ringdown “echoes” are excited. The amplitude of such echoes decays slowly and could thus serve as a silver bullet for plasmas near charged black holes.

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