A lattice formulation of Weyl fermions on a single curved surface
Abstract
In the standard lattice domain-wall fermion formulation, one needs two flat domain-walls where both of the left- and right-handed massless modes appear. In this work we investigate a single domain-wall system with a nontrivial curved background. Specifically we consider a massive fermion on a square lattice, whose domain-wall is a sphere. In the free theory, we find that a single Weyl fermion is localized at the wall and it feels gravity through the induced spin connection. With a topologically nontrivial link gauge field, however, we find a zero mode with the opposite chirality localized at the center where the gauge field is singular. In the latter case, the low-energy effective theory is not chiral but vectorlike. We discuss how to circumvent this obstacle in formulating lattice chiral gauge theory in the single domain-wall fermion system.
Keywords
Cite
@article{arxiv.2402.09774,
title = {A lattice formulation of Weyl fermions on a single curved surface},
author = {Shoto Aoki and Hidenori Fukaya and Naoto Kan},
journal= {arXiv preprint arXiv:2402.09774},
year = {2024}
}
Comments
26 pages, 12 figures, minor corrections, published version