Grassmann tensor renormalization group for the massive Schwinger model with a $θ$ term using staggered fermions

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Main Authors: Kanno, Hayato, Akiyama, Shinichiro, Murakami, Kotaro, Takeda, Shinji
Format: Preprint
Published: 2024
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author Kanno, Hayato
Akiyama, Shinichiro
Murakami, Kotaro
Takeda, Shinji
author_facet Kanno, Hayato
Akiyama, Shinichiro
Murakami, Kotaro
Takeda, Shinji
contents We use the Grassmann tensor renormalization group method to investigate the $N_f=2$ Schwinger model with the staggered fermions in the presence of a $2π$ periodic $θ$ term in a broad range of mass. The method allows us to deal with the massive staggered fermions straightforwardly and to study the $θ$ dependence of the free energy and topological charge in the thermodynamic limit. Our calculation provides consistent results with not only the analytical solution in the large mass limit but also the previous Monte Carlo studies in the small mass regime. Our numerical results also suggest that the $N_f=2$ Schwinger model on a lattice has a different phase structure, than the model in the continuum limit.
format Preprint
id arxiv_https___arxiv_org_abs_2412_08959
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Grassmann tensor renormalization group for the massive Schwinger model with a $θ$ term using staggered fermions
Kanno, Hayato
Akiyama, Shinichiro
Murakami, Kotaro
Takeda, Shinji
High Energy Physics - Lattice
High Energy Physics - Phenomenology
High Energy Physics - Theory
We use the Grassmann tensor renormalization group method to investigate the $N_f=2$ Schwinger model with the staggered fermions in the presence of a $2π$ periodic $θ$ term in a broad range of mass. The method allows us to deal with the massive staggered fermions straightforwardly and to study the $θ$ dependence of the free energy and topological charge in the thermodynamic limit. Our calculation provides consistent results with not only the analytical solution in the large mass limit but also the previous Monte Carlo studies in the small mass regime. Our numerical results also suggest that the $N_f=2$ Schwinger model on a lattice has a different phase structure, than the model in the continuum limit.
title Grassmann tensor renormalization group for the massive Schwinger model with a $θ$ term using staggered fermions
topic High Energy Physics - Lattice
High Energy Physics - Phenomenology
High Energy Physics - Theory
url https://arxiv.org/abs/2412.08959