English

The First Chiral Homology Group

Quantum Algebra 2021-03-12 v1 Algebraic Geometry Representation Theory

Abstract

We study the first chiral homology group of elliptic curves with coefficients in vacuum insertions of a conformal vertex algebra V. We find finiteness conditions on V guaranteeing that these homologies are finite dimensional, generalizing the C2C_2-cofinite, or quasi-lisse condition in the degree 0 case. We determine explicitly the flat connections that these homologies acquire under smooth variation of the elliptic curve, as insertions of the conformal vector and the Weierstrass ζ\zeta function. We construct linear functionals associated to self-extensions of V-modules and prove their convergence under said finiteness conditions. These linear functionals turn out to be degree 1 analogs of the n-point functions in the degree 0 case. As a corollary we prove the vanishing of the first chiral homology group of an elliptic curve with values in several rational vertex algebras, including affine sl2sl_2 at non-negative integral level, the (2,2k+1)-minimal models and arbitrary simple affine vertex algebras at level 1. Of independent interest, we prove a Fourier space version of the Borcherds formula.

Keywords

Cite

@article{arxiv.2103.06322,
  title  = {The First Chiral Homology Group},
  author = {Jethro van Ekeren and Reimundo Heluani},
  journal= {arXiv preprint arXiv:2103.06322},
  year   = {2021}
}

Comments

66 pages

R2 v1 2026-06-23T23:58:36.734Z