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DOE OSTI Β· 3011507

6D large charge and 2D Virasoro blocks

Abstract

We compute observables in the interacting rank-one 6D 𝒩 =(2,0) superconformal field theory (SCFT) at large 𝑅-charge. We focus on correlators involving Ξ¦ 𝑛 , namely symmetric products of the bottom component of the supermultiplet containing the stress tensor. By using the moduli space effective action and methods from the large-charge expansion, we compute the operator product expansion coefficients ⟨Φ 𝑛 ⁒Φ π‘š ⁒Φ 𝑛+π‘š ⟩ in an expansion in 1/𝑛. The coefficients of the expansion are only partially determined from the 6D perspective, but we manage to fix them order-by-order in 1/𝑛 numerically by utilizing the 6⁒D/2⁒D correspondence. This is made possible by the fact that this 6D observable can be extracted in 2D from a specific double-scaling limit of the vacuum Virasoro block, which can be efficiently computed numerically. We also extend the computation to higher-rank SCFTs, and discuss various applications of our results to 6D as well as 2D.

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BibTeXRIS

Heckman, Jonathan J. [Univ. of Pennsylvania, Philadelphia, PA (United States)] (ORCID:0000000339397810), Sharon, Adar [State Univ. of New York (SUNY), Stony Brook, NY (United States)] (ORCID:0000000270298645), Watanabe, Masataka [Nagoya Univ. (Japan)] (ORCID:0000000188413915). 2025-02-05. 6D large charge and 2D Virasoro blocks. https://doi.org/10.1103/physrevd.111.045002

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