English

Topological Multipartite Entanglement in a Fermi Liquid

Mesoscale and Nanoscale Physics 2022-08-05 v2 Strongly Correlated Electrons Quantum Physics

Abstract

We show that the topology of the Fermi sea of a DD-dimensional Fermi gas is reflected in the multipartite entanglement characterizing D+1D+1 regions that meet at a point. For odd DD we introduce the multipartite mutual information, and show that it exhibits a logDL\log^D L divergence as a function of system size LL with a universal coefficient that is proportional to the Euler characteristic χF\chi_F of the Fermi sea. This provides a generalization, for a Fermi gas, of the well-known result for D=1D=1 that expresses the logL\log L divergence of the bipartite entanglement entropy in terms of the central charge cc characterizing a conformal field theory. For even DD we introduce a charge-weighted entanglement entropy that is manifestly odd under a particle-hole transformation. We show that the corresponding charge-weighted mutual information exhibits a similar logDL\log^D L divergence proportional to χF\chi_F. Our analysis relates the universal behavior of the multipartite mutual information in the absence of interactions to the D+1D+1'th order equal-time density correlation function, which we show exhibits a universal behavior in the long wavelength limit proportional to χF\chi_F. Our analytic results are based on the replica method. In addition we perform a numerical study of the charge-weighted mutual information for D=2D=2 that confirms several aspects of the analytic theory. Finally, we consider the effect of interactions perturbatively within the replica theory. We show that for D=3D=3 the log3L\log^3 L divergence of the topological mutual information is not perturbed by weak short-ranged interactions, though for D=2D=2 the charge-weighted mutual information is perturbed. Thus, for D=3D=3 the multipartite mutual information provides a robust classification that distinguishes distinct topological Fermi liquid phases.

Keywords

Cite

@article{arxiv.2204.06559,
  title  = {Topological Multipartite Entanglement in a Fermi Liquid},
  author = {Pok Man Tam and Martin Claassen and Charles L. Kane},
  journal= {arXiv preprint arXiv:2204.06559},
  year   = {2022}
}

Comments

Published version. Main: 20 pages, 10 figures. Supplement: 5 appendices, 9 figures and 1 table

R2 v1 2026-06-24T10:47:21.591Z