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Fate of Quantum Anomalies for 1d lattice chiral fermion with a simple non-Hermitian Hamiltonian

Authors :
Wei-Qiang Chen
Yong-Shi Wu
Wenjie Xi
Wei-Zhu Yi
Gen Yue
Source :
Journal of High Energy Physics
Publication Year :
2023
Publisher :
Springer Science and Business Media LLC, 2023.

Abstract

It is generally believed that the 1+1D model for a single chiral fermion does not exist by itself alone on lattice. The obstruction to such a lattice realization is the failure to reproduce the quantum anomalies of a chiral fermion in continuum. The conventional way to escape is to associate the anomalous 1d system with a 2d bulk, which is in a topologically non-trivial state, as the boundary of the latter. In this paper, we propose a 1+1D chiral fermion model on 1d spatial lattice, {standing alone} -- without being associated with a 2d bulk -- with a simple {non-Hermitian} hopping Hamiltonian. We demonstrate, using various methods, that the model possesses the same chiral anomaly and gravitational anomaly as in continuum theory. Furthermore, with appropriate parameters, the low energy effective theory of the model remains a field theory for unitary chiral fermions. The essential reason for the success is that the usual "doubled" fermion mode with opposite chirality is rapidly damped out because of non-Hermicity of the Hamiltonian.<br />Comment: 19 pages, 4 figures. This is the accepted version of this article

Details

ISSN :
10298479
Volume :
2023
Database :
OpenAIRE
Journal :
Journal of High Energy Physics
Accession number :
edsair.doi.dedup.....a1a6af09ccda50fbf96601c72797d1f1