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Compact binary coalescences: The subtle issue of angular momentum

Abhay Ashtekar, Tommaso De Lorenzo, Neev Khera

2020Physical review. D/Physical review. D.33 citationsDOIOpen Access PDF

Abstract

In presence of gravitational radiation, the notion of angular momentum of an isolated system acquires an infinite dimensional supertranslation ambiguity. This fact has been emphasized in the mathematical general relativity literature over several decades. We analyze the issue in the restricted context of compact binary coalescence (CBC) where the initial total angular momentum of the binary and the final black hole spin generically refer to distinct rotation subgroups of the Bondi-Metzner-Sachs group, related by supertranslations. We show that this ambiguity can be quantified using gravitational memory and the ``black hole kick.'' Our results imply that, although the ambiguity is conceptually important, under assumptions normally made in the CBC literature, it can be ignored in practice for the current and foreseeable gravitational wave detectors.

Topics & Concepts

Angular momentumPhysicsGravitational waveAmbiguityBinary numberGeneral relativityTheoretical physicsGravitationBlack hole (networking)Context (archaeology)Classical mechanicsAstrophysicsMathematicsComputer scienceGeographyRouting protocolComputer networkArithmeticProgramming languageArchaeologyRouting (electronic design automation)Link-state routing protocolPulsars and Gravitational Waves ResearchBlack Holes and Theoretical PhysicsAstrophysical Phenomena and Observations
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