Literature DB >> 33315422

Distinguishing Fuzzballs from Black Holes through Their Multipolar Structure.

Massimo Bianchi1, Dario Consoli2, Alfredo Grillo1, Josè Francisco Morales1, Paolo Pani3, Guilherme Raposo3.   

Abstract

Within general relativity, the unique stationary solution of an isolated black hole is the Kerr spacetime, which has a peculiar multipolar structure depending only on its mass and spin. We develop a general method to extract the multipole moments of arbitrary stationary spacetimes and apply it to a large family of horizonless microstate geometries. The latter can break the axial and equatorial symmetry of the Kerr metric and have a much richer multipolar structure, which provides a portal to constrain fuzzball models phenomenologically. We find numerical evidence that all multipole moments are typically larger (in absolute value) than those of a Kerr black hole with the same mass and spin. Current measurements of the quadrupole moment of black-hole candidates could place only mild constraints on fuzzballs, while future gravitational-wave detections of extreme mass-ratio inspirals with the space mission LISA will improve these bounds by orders of magnitude.

Year:  2020        PMID: 33315422     DOI: 10.1103/PhysRevLett.125.221601

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  The effect of mission duration on LISA science objectives.

Authors:  Pau Amaro Seoane; Manuel Arca Sedda; Stanislav Babak; Christopher P L Berry; Emanuele Berti; Gianfranco Bertone; Diego Blas; Tamara Bogdanović; Matteo Bonetti; Katelyn Breivik; Richard Brito; Robert Caldwell; Pedro R Capelo; Chiara Caprini; Vitor Cardoso; Zack Carson; Hsin-Yu Chen; Alvin J K Chua; Irina Dvorkin; Zoltan Haiman; Lavinia Heisenberg; Maximiliano Isi; Nikolaos Karnesis; Bradley J Kavanagh; Tyson B Littenberg; Alberto Mangiagli; Paolo Marcoccia; Andrea Maselli; Germano Nardini; Paolo Pani; Marco Peloso; Mauro Pieroni; Angelo Ricciardone; Alberto Sesana; Nicola Tamanini; Alexandre Toubiana; Rosa Valiante; Stamatis Vretinaris; David J Weir; Kent Yagi; Aaron Zimmerman
Journal:  Gen Relativ Gravit       Date:  2021-12-27       Impact factor: 2.513

  1 in total

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