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Magnetic and Electric Black Holes in Arbitrary Dimension

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arxiv 0906.0489 v1 pith:43RO7IIO submitted 2009-06-02 hep-th gr-qc

classification hep-thgr-qc
keywords electricmagneticblackholesarbitrarycasesdifferentdimension
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In this work, we compare two different objects: electric black holes and magnetic black holes in arbitrary dimension. The comparison is made in terms of the corresponding moduli space and their extremal geometries. We treat parallelly the magnetic and the electric cases. Specifically, we discuss the gravitational solution of these spherically symmetric objects in the presence of a positive cosmological constant. Then, we find the bounded region of the moduli space allowing the existence of black holes. After identifying it in both the electric and the magnetic case, we calculate the geometry that comes out between the horizons at the coalescence points. Although the electric and magnetic cases are both very different (only dual in four dimensions), gravity solutions seem to clear up most of the differences and lead to very similar geometries.

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  1. CUDA Assisted Swampland and Black Hole Thermodynamics

    hep-th 2025-08 unverdicted novelty 4.0 of 10

    Charged black holes in a Gauss-Bonnet-modified theory are claimed to become unstable when Q/M > 2√π, linking black hole thermodynamics to swampland constraints.

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