English

Chiral Ising Gross-Neveu criticality of a single Dirac cone: A quantum Monte Carlo study

Strongly Correlated Electrons 2022-06-27 v2 Statistical Mechanics High Energy Physics - Lattice

Abstract

We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square lattice at half filling with a single Dirac cone with N=2N=2 spinor components and repulsive on-site interactions. Despite the presence of a sign problem, we accurately identify the critical interaction strength Uc=7.28±0.02U_c = 7.28 \pm 0.02 in units of the hopping amplitude, for a continuous quantum phase transition between a paramagnetic Dirac semimetal and a ferromagnetic insulator. Using finite-size scaling, we extract the critical exponents for the corresponding N=2N=2 chiral Ising Gross-Neveu universality class: the inverse correlation length exponent ν1=1.19±0.03\nu^{-1} = 1.19 \pm 0.03, the order parameter anomalous dimension ηϕ=0.31±0.01\eta_{\phi} = 0.31 \pm 0.01, and the fermion anomalous dimension ηψ=0.136±0.005\eta_{\psi} = 0.136 \pm 0.005.

Keywords

Cite

@article{arxiv.2112.09209,
  title  = {Chiral Ising Gross-Neveu criticality of a single Dirac cone: A quantum Monte Carlo study},
  author = {S. Mojtaba Tabatabaei and Amir-Reza Negari and Joseph Maciejko and Abolhassan Vaezi},
  journal= {arXiv preprint arXiv:2112.09209},
  year   = {2022}
}

Comments

Accepted for publication in Physical Review Letters