English

$\mathcal{SW}$-algebras and strings with torsion

High Energy Physics - Theory 2025-05-28 v2 Quantum Algebra

Abstract

We explore the connection between super W\mathcal{W}-algebras (SW\mathcal{SW}-algebras) and G\mathrm{G}-structures with torsion. The former are realised as symmetry algebras of strings with N=(1,0)\mathcal{N}=(1,0) supersymmetry on the worldsheet, while the latter are associated with generic string backgrounds with non-trivial Neveu-Schwarz flux HH. In particular, we focus on manifolds featuring Spin(7)\mathrm{Spin}(7), G2\mathrm{G}_2, SU(2)\mathrm{SU}(2), and SU(3)\mathrm{SU}(3)-structures. We compare the full quantum algebras with their classical limits, obtained by studying the commutators of superconformal and W\mathcal{W}-symmetry transformations, which preserve the action of the (1,0)(1,0) non-linear σ\sigma-model. We show that, at first order in the string length scale s\ell_s, the torsion deforms some of the OPE coefficients corresponding to special holonomy through a scalar torsion class.

Keywords

Cite

@article{arxiv.2412.13904,
  title  = {$\mathcal{SW}$-algebras and strings with torsion},
  author = {Xenia de la Ossa and Mateo Galdeano and Enrico Marchetto},
  journal= {arXiv preprint arXiv:2412.13904},
  year   = {2025}
}

Comments

46 pages plus appendices, 1 figure, 6 tables; v2: typos fixed, matches published version