Siegel Modular Forms and Black Hole Entropy

Publication date

2017-04-11

Authors

Belin, Alexandre
Castro, Alejandra
Vieira Gomes, J.M.ISNI 0000000432804484
Keller, C.U.ISNI 0000000052360316

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Abstract

We discuss the application of Siegel Modular Forms to Black Hole entropy counting. The role of the Igusa cusp form $\chi_{10}$ in the D1D5P system is well-known, and its transformation properties are what allows precision microstate counting in this case. We apply a similar method to extract the Fourier coefficients of other Siegel modular and paramodular forms, and we show that they could serve as candidates for other types of black holes. We investigate the growth of their coefficients, identifying the dominant contributions and the leading logarithmic corrections in various regimes. We also discuss similarities and differences to the behavior of $\chi_{10}$, and possible physical interpretations of such forms both from a microscopic and gravitational point of view.

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Belin, A, Castro, A, Vieira Gomes, J & Keller, C A 2017, 'Siegel Modular Forms and Black Hole Entropy', Journal of High Energy Physics, vol. 4, no. 57. https://doi.org/10.1007/JHEP04(2017)057