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Geoffrey Compère

Researcher at Université libre de Bruxelles

Publications -  138
Citations -  8191

Geoffrey Compère is an academic researcher from Université libre de Bruxelles. The author has contributed to research in topics: Black hole & Gravitation. The author has an hindex of 49, co-authored 130 publications receiving 6952 citations. Previous affiliations of Geoffrey Compère include University of Amsterdam & Harvard University.

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Black holes, gravitational waves and fundamental physics: a roadmap.

Leor Barack, +205 more
TL;DR: A comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress can be found in this article, where the authors present a concise, yet comprehensive overview.
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Surface charge algebra in gauge theories and thermodynamic integrability

TL;DR: In this article, the surface charges and their algebra in interacting Lagrangian gauge field theories are constructed out of the underlying linearized theory using techniques from the variational calculus, and they are interpreted as a Pfaff system.
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Classical central extension for asymptotic symmetries at null infinity in three spacetime dimensions

TL;DR: The symmetry algebra of asymptotically flat spacetimes at null infinity in three dimensions is the semi-direct sum of the infinitesimal diffeomorphisms on the circle with an Abelian ideal of supertranslations as mentioned in this paper.
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Black holes, gravitational waves and fundamental physics: a roadmap

Leor Barack, +231 more
TL;DR: A comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress can be found in this article, which is an initiative taken within the framework of the European Action on 'Black holes, Gravitational waves and Fundamental Physics'.
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Setting the boundary free in AdS/CFT

TL;DR: In this article, a new class of boundary conditions for AdSd+1 under which the boundary metric becomes a dynamical field was proposed, where contributions from boundary counter-terms in the bulk gravitational action render such fluctuations normalizable.