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Mass and Force Relations for Extremal EMDA Black Holes

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arxiv 2412.12277 v1 pith:VH2PENRS submitted 2024-12-16 hep-th gr-qc

classification hep-thgr-qc
keywords blackholesextremalforcealwaysbindingcasecertain
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We investigate various properties of extremal dyonic static black holes in Einstein-Maxwell-Dilaton-Axion theory. We obtain a simple first-order ordinary differential equation for the black hole mass in terms of its electric and magnetic charges, which we can solve explicitly for certain special values of the scalar couplings. For one such case we also construct new dyonic black hole solutions, making use of the presence of an enhanced SL(2,R) symmetry. Finally, we investigate the structure of long range forces and binding energies between non-equivalent extremal black holes. For certain special cases, we can identify regions of parameter space where the force is always attractive or repulsive. Unlike in the case without an axion, the force and binding energies between distinct black holes are not always correlated with each other. Our work is motivated in part by the question of whether long range forces between non-identical states can potentially encode information about UV constraints on low-energy physics.

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  1. Mass and Force Relations for Extremal E2MD Black Holes

    hep-th 2026-08 conditional novelty 6.0 of 10

    For extremal E2MD black holes, the coupling relation b=-1/a makes the long-range force between any two charge configurations vanish, with attraction on one side and repulsion on the other in every analytically control...

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