Novel Lattice Formulation of 2D Chiral Gauge Theory via Bosonization

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Hauptverfasser: Morikawa, Okuto, Onoda, Soma, Suzuki, Hiroshi
Format: Preprint
Veröffentlicht: 2025
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author Morikawa, Okuto
Onoda, Soma
Suzuki, Hiroshi
author_facet Morikawa, Okuto
Onoda, Soma
Suzuki, Hiroshi
contents Recently, lattice formulations of 2D Abelian chiral gauge theory have been constructed based on Abelian bosonization. It is remarkable about these 2D lattice formulations that they reproduce the same gauge anomaly structure as the continuum theory, even at a finite lattice spacing. In this talk, we propose yet another lattice formulation based on the ``excision method'' introduced recently in Ref.~\cite{Abe:2023uan}. This approach respects the admissibility condition, which is a constraint on the smoothness of lattice field configurations; it usually prohibits magnetically charged objects, that is, vector-charged objects in fermion theories. We show that such objects can be defined in the excision method as a lattice defect called a ``hole,'' and discuss the selection rules for charged objects.
format Preprint
id arxiv_https___arxiv_org_abs_2501_18949
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Novel Lattice Formulation of 2D Chiral Gauge Theory via Bosonization
Morikawa, Okuto
Onoda, Soma
Suzuki, Hiroshi
High Energy Physics - Lattice
Recently, lattice formulations of 2D Abelian chiral gauge theory have been constructed based on Abelian bosonization. It is remarkable about these 2D lattice formulations that they reproduce the same gauge anomaly structure as the continuum theory, even at a finite lattice spacing. In this talk, we propose yet another lattice formulation based on the ``excision method'' introduced recently in Ref.~\cite{Abe:2023uan}. This approach respects the admissibility condition, which is a constraint on the smoothness of lattice field configurations; it usually prohibits magnetically charged objects, that is, vector-charged objects in fermion theories. We show that such objects can be defined in the excision method as a lattice defect called a ``hole,'' and discuss the selection rules for charged objects.
title Novel Lattice Formulation of 2D Chiral Gauge Theory via Bosonization
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2501.18949