4.4 Article

Decomposition of BPS moduli spaces and asymptotics of supersymmetric partition functions

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 1, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP01(2022)062

关键词

Effective Field Theories; Matrix Models; Supersymmetric Effective Theories; Supersymmetric Gauge Theory

资金

  1. ERC [681908]
  2. NSF [PHY-1915093]
  3. Simons Foundation (Simons Collaboration on the Non-Perturbative Bootstrap) [397411, 488647]
  4. Odysseus grant from the FWO [G0F9516N]
  5. KU Leuven C1 grant [ZKD1118 C16/16/005]
  6. Research Programme of the Research Foundation from the FWO [G.0926.17N]

向作者/读者索取更多资源

The prototype presented offers a Wilsonian analysis of the asymptotics of supersymmetric partition functions of non-abelian gauge theories. By localizing the partition function on various patches of the BPS moduli space and summing up their contributions, an accurate and scheme-independent asymptotic result is obtained in the Wilsonian approach. As a byproduct, the most general asymptotic expression for the index of gauge theories in the Cardy-like limit is derived, encompassing and extending all previous results.
We present a prototype for Wilsonian analysis of asymptotics of supersymmetric partition functions of non-abelian gauge theories. Localization allows expressing such partition functions as an integral over a BPS moduli space. When the limit of interest introduces a scale hierarchy in the problem, asymptotics of the partition function is obtained in the Wilsonian approach by i) decomposing (in some suitable scheme) the BPS moduli space into various patches according to the set of light fields (lighter than the scheme dependent cut-off Lambda) they support, ii) localizing the partition function of the effective field theory on each patch (with cut-offs set by the scheme), and iii) summing up the contributions of all patches to obtain the final asymptotic result (which is scheme-independent and accurate as Lambda -> infinity). Our prototype concerns the Cardy-like asymptotics of the 4d superconformal index, which has been of interest recently for its application to black hole microstate counting in AdS(5)/CFT4. As a byproduct of our analysis we obtain the most general asymptotic expression for the index of gauge theories in the Cardy-like limit, encompassing and extending all previous results.

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