Papers
Topics
Authors
Recent
Search
2000 character limit reached

Super Liouville theory on the torus: bootstrap and the super Virasoro minimal string

Published 1 Oct 2026 in hep-th | (2610.01909v1)

Abstract: Motivated by applications to low-dimensional worldsheet string constructions, we analyze N=1\mathcal{N} = 1 super Liouville theory on the torus. Specifically, we re-examine the recursive representations of the torus one-point super Virasoro blocks that have been constructed in the literature and correct several of their ingredients. In the process we identify a new block in the odd spin structure, associated with a privileged superdescendant whose torus one-point function transforms like that of a Virasoro primary. We then demonstrate that the structure constants for both spacelike and timelike super Liouville theory satisfy modular crossing. Furthermore, we use a bootstrap argument to construct modular crossing kernels for all four spin structure sectors, valid for central charges c∈C∖(−∞,32]c \in \mathbb{C}\setminus(-\infty,\tfrac{3}{2}], and verify that they correctly implement the crossing transformations of the blocks. As a concrete application of the technology, we analyze the super Virasoro minimal string. There are four such theories, 0A<sup>±\mathrm{0A}<sup>{\pm} and 0B<sup>±\mathrm{0B}<sup>{\pm}, which are distinguished by the GSO projection together with the choice of worldsheet supercharge. The resulting NS-sector sphere three-point and torus one-point amplitudes are shown to agree with topological recursion on the spectral curves of the dual matrix integrals, which were recently derived from 3d supergravity. Notably, the one-point function of the privileged superdescendant plays an essential role in the contribution of the odd spin structure to the torus amplitude via a careful treatment of the picture changing operator. We also identify an exceptional zero-momentum Ramond insertion in the 0A<sup>−\mathrm{0A}<sup>{-} theory that we interpret geometrically as a Ramond puncture, and match its mixed sphere three-point amplitude to the corresponding intersection theory prediction.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.