English

Many versus one: the disorder operator and entanglement entropy in fermionic quantum matter

Strongly Correlated Electrons 2023-09-06 v5 Statistical Mechanics High Energy Physics - Theory Computational Physics

Abstract

Motivated by recent development of the concept of the disorder operator and its relation with entanglement entropy in bosonic systems, here we show the disorder operator successfully probes many aspects of quantum entanglement in fermionic many-body systems. From both analytical and numerical computations in free and interacting fermion systems in 1D and 2D, we find the disorder operator and the entanglement entropy exhibit similar universal scaling behavior, as a function of the boundary length of the subsystem, but with subtle yet important differences. In 1D they both follow the logL\log{L} scaling behavior with the coefficient determined by the Luttinger parameter for disorder operator, and the conformal central charge for entanglement entropy. In 2D they both show the universal LlogLL\log L scaling behavior in free and interacting Fermi liquid states, with the coefficients depending on the geometry of the Fermi surfaces. However at a 2D quantum critical point with non-Fermi-liquid state, extra symmetry information is needed in the design of the disorder operator, so as to reveal the critical fluctuations as does the entanglement entropy. Our results demonstrate the fermion disorder operator can be used to probe quantum many-body entanglement related to global symmetry, and provides new tools to explore the still largely unknown territory of highly entangled fermion quantum matter in 2 or higher dimensions.

Keywords

Cite

@article{arxiv.2209.07103,
  title  = {Many versus one: the disorder operator and entanglement entropy in fermionic quantum matter},
  author = {Weilun Jiang and Bin-Bin Chen and Zi Hong Liu and Junchen Rong and Fakher F. Assaad and Meng Cheng and Kai Sun and Zi Yang Meng},
  journal= {arXiv preprint arXiv:2209.07103},
  year   = {2023}
}

Comments

13 pages, 7 figures with 8 pages supplemental material