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The global non-linear stability of the Kerr-de Sitter family of black holes

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arxiv 1606.04014 v2 pith:XWIJQXRJ submitted 2016-06-13 math.DG gr-qcmath-phmath.APmath.MP

classification math.DGgr-qcmath-phmath.APmath.MP
keywords blackeinsteinequationsgaugekerr-denon-linearsittersolution
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We establish the full global non-linear stability of the Kerr-de Sitter family of black holes, as solutions of the initial value problem for the Einstein vacuum equations with positive cosmological constant, for small angular momenta, and without any symmetry assumptions on the initial data. We achieve this by extending the linear and non-linear analysis on black hole spacetimes described in a sequence of earlier papers by the authors: We develop a general framework which enables us to deal systematically with the diffeomorphism invariance of Einstein's equations. In particular, the iteration scheme used to solve Einstein's equations automatically finds the parameters of the Kerr-de Sitter black hole that the solution is asymptotic to, the exponentially decaying tail of the solution, and the gauge in which we are able to find the solution; the gauge here is a wave map/DeTurck type gauge, modified by source terms which are treated as unknowns, lying in a suitable finite-dimensional space.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Hidden Symmetry of Kerr-deSitter from Manifest Symmetry of Painlev\'e VI

    gr-qc 2026-08 conditional novelty 6.0 of 10

    Mass symmetries of the Kerr-deSitter Teukolsky equation are shown to follow from a symmetry of Painlevé VI via isomonodromy, and the dual spacetime is a black hole whose horizon angular velocities give a known mode-st...

  2. Optical images of the Kerr-Sen black hole and thin accretion disk

    gr-qc 2025-07 reject novelty 3.0 of 10

    Ray-traced images of a Kerr-Sen black hole with a thin accretion disk show spin-dominated inner-shadow deformation and inclination-dominated redshift maps, while the 86-versus-230 GHz brightness gap is inherited from ...

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