Topological properties of minimally doubled fermions in two space-time dimensions
High Energy Physics - Lattice
2022-07-13 v1 High Energy Physics - Theory
Abstract
The two-dimensional Schwinger model is used to explore how lattice fermion operators perceive the global topological charge of a given background gauge field. We focus on Karsten-Wilczek and Borici-Creutz fermions, which are minimally doubled, and compare them to Wilson, Brillouin, naive, staggered and Adams fermions. For each operator the eigenvalue spectrum in a background with is determined along with the chiralities of the eigenmodes, and the spectral flow of the pertinent hermitean operator is worked out. We find that Karsten-Wilczek and Borici-Creutz fermions perceive the global topological charge in the same way as staggered and naive fermions do.
Keywords
Cite
@article{arxiv.2203.15699,
title = {Topological properties of minimally doubled fermions in two space-time dimensions},
author = {Stephan Dürr and Johannes H. Weber},
journal= {arXiv preprint arXiv:2203.15699},
year = {2022}
}
Comments
32 pages, 31 figures with 68 panels