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Anti-de-Sitter regular electric multipoles: towards Einstein-Maxwell-AdS solitons

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arxiv 1507.04370 v1 pith:7JGFGWIJ submitted 2015-07-15 gr-qc hep-th

classification gr-qchep-th
keywords firstregularsolitonsspacetimeanti-de-sittereinstein-maxwellelectricmultipole
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abstract

We discuss electrostatics in Anti-de-Sitter ($AdS$) spacetime, in global coordinates. We observe that the multipolar expansion has two crucial differences to that in Minkowski spacetime. First, there are everywhere regular solutions, with finite energy, for every multipole moment except for the monopole. Second, all multipole moments decay with the same inverse power of the areal radius, $1/r$, as spatial infinity is approached. The first observation suggests there may be regular, self-gravitating, Einstein-Maxwell solitons in $AdS$ spacetime. The second observation, renders a Lichnerowicz-type no-soliton theorem inapplicable. Consequently, we suggest Einstein-Maxwell solitons exist in $AdS$, and we support this claim by computing the first order metric perturbations sourced by test electric field multipoles, which are obtained analytically in closed form.

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  1. Magnetising de Sitter and Anti-de Sitter spacetimes

    gr-qc 2026-07 conditional novelty 5.5 of 10

    A Harrison-type map plus fluid rescaling produces spherical Melvin analogues of dS and AdS that reduce to ordinary (A)dS when the magnetic field vanishes.

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