English

D-brane probes, branched double covers, and noncommutative resolutions

High Energy Physics - Theory 2016-08-18 v1 Algebraic Geometry

Abstract

This paper describes D-brane probes of theories arising in abelian gauged linear sigma models (GLSMs) describing branched double covers and noncommutative resolutions thereof, via nonperturbative effects rather than as the critical locus of a superpotential. As these theories can be described as IR limits of Landau-Ginzburg models, technically this paper is an exercise in utilizing (sheafy) matrix factorizations. For Landau-Ginzburg models which are believed to flow in the IR to smooth branched double covers, our D-brane probes recover the structure of the branched double cover (and flat nontrivial B fields), verifying previous results. In addition to smooth branched double covers, the same class of Landau-Ginzburg models is also believed to sometimes flow to `noncommutative resolutions' of singular spaces. These noncommutative resolutions are abstract conformal field theories without a global geometric description, but D-brane probes perceive them as non-Kahler small resolutions of a singular Calabi-Yau. We conjecture that such non-Kahler small resolutions are typical in D-brane probes of such theories.

Keywords

Cite

@article{arxiv.1211.2446,
  title  = {D-brane probes, branched double covers, and noncommutative resolutions},
  author = {Nicolas Addington and Edward Segal and Eric Sharpe},
  journal= {arXiv preprint arXiv:1211.2446},
  year   = {2016}
}

Comments

61 pages, LaTeX

R2 v1 2026-06-21T22:36:25.439Z