Literature DB >> 29543020

Probing Planckian Corrections at the Horizon Scale with LISA Binaries.

Andrea Maselli1,2, Paolo Pani3,4, Vitor Cardoso2,5, Tiziano Abdelsalhin3,4, Leonardo Gualtieri3,4, Valeria Ferrari3,4.   

Abstract

Several quantum-gravity models of compact objects predict microscopic or even Planckian corrections at the horizon scale. We explore the possibility of measuring two model-independent, smoking-gun effects of these corrections in the gravitational waveform of a compact binary, namely, the absence of tidal heating and the presence of tidal deformability. For events detectable by the future space-based interferometer LISA, we show that the effect of tidal heating dominates and allows one to constrain putative corrections down to the Planck scale. The measurement of the tidal Love numbers with LISA is more challenging but, in optimistic scenarios, it allows us to constrain the compactness of a supermassive exotic compact object down to the Planck scale. Our analysis suggests that highly spinning, supermassive binaries at 1-20 Gpc provide unparalleled tests of quantum-gravity effects at the horizon scale.

Entities:  

Year:  2018        PMID: 29543020     DOI: 10.1103/PhysRevLett.120.081101

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


  3 in total

1.  Gravitational instability of exotic compact objects.

Authors:  Andrea Addazi; Antonino Marcianò; Nicolás Yunes
Journal:  Eur Phys J C Part Fields       Date:  2020-01-16       Impact factor: 4.590

2.  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

3.  Probing the nature of black holes: Deep in the mHz gravitational-wave sky.

Authors:  Vishal Baibhav; Leor Barack; Emanuele Berti; Béatrice Bonga; Richard Brito; Vitor Cardoso; Geoffrey Compère; Saurya Das; Daniela Doneva; Juan Garcia-Bellido; Lavinia Heisenberg; Scott A Hughes; Maximiliano Isi; Karan Jani; Chris Kavanagh; Georgios Lukes-Gerakopoulos; Guido Mueller; Paolo Pani; Antoine Petiteau; Surjeet Rajendran; Thomas P Sotiriou; Nikolaos Stergioulas; Alasdair Taylor; Elias Vagenas; Maarten van de Meent; Niels Warburton; Barry Wardell; Vojtěch Witzany; Aaron Zimmerman
Journal:  Exp Astron (Dordr)       Date:  2021-09-03       Impact factor: 2.012

  3 in total

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