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Main Authors: Yue, Yan-Guang, Yang, Shuai, Liu, Zheng-Xin, Chen, Yan
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2503.13239
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author Yue, Yan-Guang
Yang, Shuai
Liu, Zheng-Xin
Chen, Yan
author_facet Yue, Yan-Guang
Yang, Shuai
Liu, Zheng-Xin
Chen, Yan
contents It is known that the topological Hopf term in two-dimensional (2D) spin systems can be derived by coupling to massless Dirac fermions. We establish a universal rule governing the generation of Hopf terms in 2D quantum spin systems coupled to Dirac fermions. The key insight identifies the Hopf coefficient as the oriented volume in the $\mathfrak{su}(2)$ Lie algebra space formed by Dirac cone matrix bases. This geometric interpretation allows direct determination of Hopf term without path integral computations. Applying this framework, we demonstrate nontrivial Hopf term in tailored checkerboard lattice models and recover known results in graphene-based systems.
format Preprint
id arxiv_https___arxiv_org_abs_2503_13239
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Universal Rule for Topological Hopf Term via Dirac-Spin Coupling
Yue, Yan-Guang
Yang, Shuai
Liu, Zheng-Xin
Chen, Yan
Strongly Correlated Electrons
It is known that the topological Hopf term in two-dimensional (2D) spin systems can be derived by coupling to massless Dirac fermions. We establish a universal rule governing the generation of Hopf terms in 2D quantum spin systems coupled to Dirac fermions. The key insight identifies the Hopf coefficient as the oriented volume in the $\mathfrak{su}(2)$ Lie algebra space formed by Dirac cone matrix bases. This geometric interpretation allows direct determination of Hopf term without path integral computations. Applying this framework, we demonstrate nontrivial Hopf term in tailored checkerboard lattice models and recover known results in graphene-based systems.
title Universal Rule for Topological Hopf Term via Dirac-Spin Coupling
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2503.13239