Curvature and dynamical spacetimes: can we peer into the quantum regime?

Author:

Cardoso VitorORCID,Hilditch DavidORCID,Marouda KrinioORCID,Natário JoséORCID,Sperhake UlrichORCID

Abstract

Abstract Stationary compact astrophysical objects such as black holes and neutron stars behave as classical systems from the gravitational point of view. Their (observable) curvature is everywhere ‘small’. Here we investigate whether mergers of such objects, or other strongly dynamical spacetimes such as collapsing configurations, may probe the strong-curvature regime of general relativity. Our results indicate that dynamical black hole spacetimes always result in a modest increase 3 in the Kretschmann scalar, relative to the stationary state. In contrast, we find that the Kretschmann scalar can dynamically increase by orders of magnitude, during the gravitational collapse of scalar fields, and that the (normalized) peak curvature does not correspond to that of the critical solution. Nevertheless, without fine tuning of initial data, this increase lies far below that needed to render quantum-gravity corrections important.

Funder

Cambridge Service for Data Driven Discovery

Villum Fonden

Fundação para a Ciência e a Tecnologia

Science and Technology Facilities Council

Maryland Advanced Research Computing Center

Texas Advanced Computing Center

San Diego Supercomputer Center

H2020 European Research Council

Marie Sklodowska-Curie Actions

Publisher

IOP Publishing

Subject

Physics and Astronomy (miscellaneous)

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