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Quantum Attractor Flows

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arxiv 0707.0267 v3 pith:V7SL2IYL submitted 2007-07-02 hep-th gr-qc

classification hep-thgr-qc
keywords blackspacecaseholeholesphasequantizationradial
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Motivated by the interpretation of the Ooguri-Strominger-Vafa conjecture as a holographic correspondence in the mini-superspace approximation, we study the radial quantization of stationary, spherically symmetric black holes in four dimensions. A key ingredient is the classical equivalence between the radial evolution equation and geodesic motion of a fiducial particle on the moduli space M^*_3 of the three-dimensional theory after reduction along the time direction. In the case of N=2 supergravity, M^*_3 is a para-quaternionic-Kahler manifold; in this case, we show that BPS black holes correspond to a particular class of geodesics which lift holomorphically to the twistor space Z of M^*_3, and identify Z as the BPS phase space. We give a natural quantization of the BPS phase space in terms of the sheaf cohomology of Z, and compute the exact wave function of a BPS black hole with fixed electric and magnetic charges in this framework. We comment on the relation to the topological string amplitude, extensions to N>2 supergravity theories, and applications to automorphic black hole partition functions.

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  1. Exceptionality, Supersymmetry and Non-associativity in Physics

    hep-th 2025-07 conditional novelty 2.0 of 10

    A survey connecting the exceptional Jordan algebra, magical supergravities, and non-associative magnetic and R-flux algebras in string and M-theory.

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