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Force-free higher derivative Einstein-Maxwell theory and multi-centered black holes

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arxiv 2307.06478 v3 pith:DYBID3HT submitted 2023-07-12 hep-th gr-qcphysics.class-ph

classification hep-thgr-qcphysics.class-ph
keywords derivativeblackcouplingsconstraintseinstein-maxwellforceforce-freehigher
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We investigate which 4-derivative extensions of Einstein-Maxwell theory admit multi-extremal black hole solutions with gravitational force balanced by Coulomb force. We obtain a set of constraints on the 4-derivative couplings by exploring various probe limits in multi-black hole systems. It turns out that these constraints are tighter than those needed to protect the mass-charge ratio of extremal black holes from higher derivative corrections. In fact, they are so strong that the Majumdar-Papapetrou multi-black solutions are unmodified by the force-free combinations of the 4-derivative couplings. Explicit examples of such 4-derivative couplings are given in 4- and 5-spacetime dimensions. Interestingly these include curvature-squared supergravity actions and the quasi-topological $F^4$ term.

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  1. Leading Higher Derivative Corrections to Multipole Moments of Kerr-Newman Black Hole

    hep-th 2024-11 conditional novelty 6.0 of 10

    The 4-derivative corrections to Kerr-Newman multipole moments depend only on field-redefinition-invariant couplings, and parity-odd terms turn on multipole moments that vanish in Einstein-Maxwell theory.

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