English

Entropic $F$-function of 3D Ising conformal field theory via the fuzzy sphere regularization

High Energy Physics - Theory 2024-02-01 v1 Statistical Mechanics Strongly Correlated Electrons

Abstract

The FF-function, the three-dimensional counterpart of the central charge in the 2D conformal field theory, measures the effective number of degrees of freedom in 3D quantum field theory, and it is monotonically decreasing under the renormalization group flow. However, unlike the 2D central charge, the FF-function is a non-local quantity and cannot be computed using correlators of local operators. Utilizing the recently proposed fuzzy sphere regularization, we have performed the first non-perturbative computation of the FF-function for the paradigmatic 3D Ising conformal field theory through entanglement entropy. Our estimate yields FIsing0.0612(5)F_{\text{Ising}} \approx 0.0612(5), slightly smaller than the FF-function of a real free scalar, Ffree=log283ζ(3)16π20.0638F_{\text{free}} = \frac{\log 2}{8} - \frac{3\zeta(3)}{16\pi^2} \approx 0.0638, consistent with the FF-theorem, and close to the 4ϵ4-\epsilon expansion estimates of FIsing0.06100.0623F_{\text{Ising}} \approx 0.0610 \sim 0.0623.

Keywords

Cite

@article{arxiv.2401.17362,
  title  = {Entropic $F$-function of 3D Ising conformal field theory via the fuzzy sphere regularization},
  author = {Liangdong Hu and W. Zhu and Yin-Chen He},
  journal= {arXiv preprint arXiv:2401.17362},
  year   = {2024}
}

Comments

9 pages, 9 figures