English

$tt^{*}$ Geometry of Modular Curves

High Energy Physics - Theory 2019-10-17 v2 Mathematical Physics math.MP

Abstract

Motivated by Vafa's model, we study the tttt^{*} geometry of a degenerate class of FQHE models with an abelian group of symmetry acting transitively on the classical vacua. Despite it is not relevant for the phenomenology of the FQHE, this class of theories has interesting mathematical properties. We find that these models are parametrized by the family of modular curves Y1(N)=H/Γ1(N)Y_{1}(N)= \mathbb{H}/\Gamma_{1}(N), labelled by an integer N2N\geq 2. Each point of the space of level NN is in correspondence with a one dimensional N=4\mathcal{N}=4 Landau-Ginzburg theory, which is defined on an elliptic curve with NN vacua and NN poles in the fundamental cell. The modular curve Y(N)=H/Γ(N)Y(N)= \mathbb{H}/\Gamma(N) is a cover of degree NN of Y1(N)Y_{1}(N) and plays the role of spectral cover for the space of models. The presence of an abelian symmetry allows to diagonalize the Berry's connection of the vacuum bundle and the tttt^{*} equations turn out to be the well known A^N1\hat{A}_{N-1} Toda equations. The underlying structure of the modular curves and the connection between geometry and number theory emerge clearly when we study the modular properties and classify the critical limits of these models.

Keywords

Cite

@article{arxiv.1803.00489,
  title  = {$tt^{*}$ Geometry of Modular Curves},
  author = {Riccardo Bergamin},
  journal= {arXiv preprint arXiv:1803.00489},
  year   = {2019}
}

Comments

65 pages

R2 v1 2026-06-23T00:38:25.352Z