English

2D Ising Field Theory in a Magnetic Field: The Yang-Lee Singularity

High Energy Physics - Theory 2022-08-24 v2

Abstract

We study Ising Field Theory (the scaling limit of Ising model near the Curie critical point) in pure imaginary external magnetic field. We put particular emphasis on the detailed structure of the Yang-Lee edge singularity. While the leading singular behavior is controlled by the Yang-Lee fixed point (== minimal CFT M2/5{\cal M}_{2/5}), the fine structure of the subleading singular terms is determined by the effective action which involves a tower of irrelevant operators. We use numerical data obtained through the "Truncated Free Fermion Space Approach" to estimate the couplings associated with two least irrelevant operators. One is the operator TTˉT{\bar T}, and we use the universal properties of the TTˉT{\bar T} deformation to fix the contributions of higher orders in the corresponding coupling parameter α\alpha. Another irrelevant operator we deal with is the descendant L4Lˉ4ϕL_{-4}{\bar L}_{-4}\phi of the relevant primary ϕ\phi in M2/5{\cal M}_{2/5}. The significance of this operator is that it is the lowest dimension operator which breaks integrability of the effective theory. We also establish analytic properties of the particle mass MM (== inverse correlation length) as the function of complex magnetic field.

Keywords

Cite

@article{arxiv.2203.11262,
  title  = {2D Ising Field Theory in a Magnetic Field: The Yang-Lee Singularity},
  author = {Hao-Lan Xu and Alexander Zamolodchikov},
  journal= {arXiv preprint arXiv:2203.11262},
  year   = {2022}
}

Comments

42 pages, 18 figures