A quantum mechanics for magnetic horizons
Abstract
We construct an supersymmetric gauged quantum mechanics, by starting from the 3d Chern-Simons-matter theory holographically dual to massive Type IIA string theory on AdS, and Kaluza-Klein reducing on with a background that is dual to the asymptotics of static dyonic BPS black holes in AdS. The background involves a choice of gauge fluxes, that we fix via a saddle-point analysis of the 3d topologically twisted index at large . The ground-state degeneracy of the effective quantum mechanics reproduces the entropy of BPS black holes, and we expect its low-lying spectrum to contain information about near-extremal horizons. Interestingly, the model has a large number of statistically-distributed couplings, reminiscent of SYK models.
Cite
@article{arxiv.2212.00672,
title = {A quantum mechanics for magnetic horizons},
author = {Francesco Benini and Saman Soltani and Ziruo Zhang},
journal= {arXiv preprint arXiv:2212.00672},
year = {2023}
}
Comments
34 pages plus appendices; v2: refs added; v3: published version