English

Self-duality protected multi-criticality in deconfined quantum phase transitions

Strongly Correlated Electrons 2021-12-01 v3 Statistical Mechanics High Energy Physics - Theory

Abstract

Duality places an important constraint on the renormalization group flows and the phase diagrams. For self-dual theories, the self-duality can be promoted as a symmetry, this leads to the multi-criticalities. This work investigates a description of the deconfined quantum criticality, the Nf=2N_f=2 QED3_3, as an example of self-dual theories and its multi-critical behavior under perturbative deformations. The multi-criticality is described by the theory with Gross-Neveu couplings and falls in a different universality class than the standard deconfined quantum criticality. We systematically calculate the scaling dimensions of various operators in the 3d quantum electrodynamics with the Chern-Simons term and Gross-Neveu couplings by the large-NN renormalization group analysis. Specifically, we find certain non-relativistic four-fermion interactions corresponding to the dimer-dimer interactions in the lattice model will drive the deconfined quantum criticality to the first-order transition, consistent with previous numerical studies.

Keywords

Cite

@article{arxiv.2104.05147,
  title  = {Self-duality protected multi-criticality in deconfined quantum phase transitions},
  author = {Da-Chuan Lu and Cenke Xu and Yi-Zhuang You},
  journal= {arXiv preprint arXiv:2104.05147},
  year   = {2021}
}

Comments

10+14 pages, 6 figures

R2 v1 2026-06-24T01:03:43.360Z