Generalized Li-Haldane Correspondence in Critical Dirac-Fermion Systems
Abstract
Topological phenomena in quantum critical systems have recently attracted growing attention, as they go beyond the traditional paradigms of condensed matter and statistical physics. However, a general framework for identifying such nontrivial phenomena, particularly in higher-dimensional systems, remains insufficiently explored. In this work, we propose a universal fingerprint for detecting nontrivial topology in critical free-fermion systems protected by global on-site symmetries. Specifically, we analytically establish an exact relation between the bulk entanglement spectrum and the boundary energy spectrum at topological criticality in arbitrary dimensions, demonstrating that the degeneracy of edge modes can be extracted from the bulk entanglement spectrum. These findings, further supported by numerical simulations of lattice models, provide a universal fingerprint for identifying nontrivial topology in critical free-fermion systems.
Keywords
Cite
@article{arxiv.2509.20054,
title = {Generalized Li-Haldane Correspondence in Critical Dirac-Fermion Systems},
author = {Yuxuan Guo and Sheng Yang and Xue-Jia Yu},
journal= {arXiv preprint arXiv:2509.20054},
year = {2026}
}