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Arithmetic of Quantum Entropy Function

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

Quantum entropy function is a proposal for computing the entropy associated with the horizon of a black hole in the extremal limit, and is related via AdS/CFT correspondence to the dimension of the Hilbert space in a dual quantum mechanics. We show that in N=4 supersymmetric string theories, quantum entropy function formalism naturally explains the origin of the subtle differences between the microscopic degeneracies of quarter BPS dyons carrying different torsion, i.e. different arithmetical properties. These arise from additional saddle points in the path integral -- whose existence depends on the arithmetical properties of the black hole charges -- constructed as freely acting orbifolds of the original AdS_2\times S^2 near horizon geometry. During this analysis we demonstrate that the quantum entropy function is insensitive to the details of the infrared cutoff used in the computation, and the details of the boundary terms added to the action. We also discuss the role of the asymptotic symmetries of AdS_2 in carrying out the path integral in the definition of quantum entropy function. Finally we show that even though quantum entropy function is expected to compute the absolute degeneracy in a given charge and angular momentum sector, it can also be used to compute the index. This can then be compared with the microscopic computation of the index.

fields

hep-th 2

years

2026 1 2024 1

verdicts

UNVERDICTED 2

representative citing papers

The Resolved Elliptic Genus and the D1-D5 CFT

hep-th · 2026-03-18 · unverdicted · novelty 8.0

The resolved elliptic genus refines the supersymmetry index for the D1-D5 CFT by summing only over symmetry sectors that mix under a deformed supercharge, yielding agreement with supergravity below the black-hole threshold where the modified elliptic genus is trivial.

An extremal black hole with a unique ground state

hep-th · 2024-11-17 · unverdicted · novelty 6.0

Microscopic D-brane description of non-supersymmetric extremal black holes yields a unique ground state with non-zero energy, confirming absence of degeneracy.

citing papers explorer

Showing 2 of 2 citing papers.

  • The Resolved Elliptic Genus and the D1-D5 CFT hep-th · 2026-03-18 · unverdicted · none · ref 82 · internal anchor

    The resolved elliptic genus refines the supersymmetry index for the D1-D5 CFT by summing only over symmetry sectors that mix under a deformed supercharge, yielding agreement with supergravity below the black-hole threshold where the modified elliptic genus is trivial.

  • An extremal black hole with a unique ground state hep-th · 2024-11-17 · unverdicted · none · ref 50 · internal anchor

    Microscopic D-brane description of non-supersymmetric extremal black holes yields a unique ground state with non-zero energy, confirming absence of degeneracy.