1–6 Aug 2022
University of Stavanger
Europe/Oslo timezone

Four-fermi deformations of the massless Schwinger model and confinement

2 Aug 2022, 14:00
30m
EOJ (UiS)

EOJ

UiS

Main auditorium where also plenaries are held
Parallel Talk A: Vacuum structure and confinement Parallels Track A

Speaker

Arkady Vainshtein

Description

We consider the massless charge-N Schwinger model and its deformation with two four-fermion operators. Without the deformations, this model exhibits chiral symmetry breaking without confinement. It is usually asserted that the massless Schwinger model is always deconfined and a string tension emerges only when a mass for the fermion field is turned on. We show that in the presence of these four-fermion operators, the massless theory can in fact confine. One of the four-fermion deformations is chirally neutral, and is a marginal deformation. The other operator can be relevant or irrelevant, and respects a ℤ_2 subgroup of chiral symmetry for even N, hence forbidding a mass term. When it is relevant, even the exactly massless theory exhibits both confinement and spontaneous chiral symmetry breaking. The construction is analogous to QCD(adj) in 2d. While the theory without four-fermion deformations is deconfined, the theory with these deformations is generically in a confining phase. We study the model on ℝ_2 using bosonization, and also analyze the mechanism of confinement on ℝ×S1, where we find that confinement is driven by fractional instantons.

Primary author

Co-authors

Alexey Cherman (University of Minnesota) Mikhail Shifman (University of Minnesota) Mithat Unsal (North Carolina State University) Theodore Jacobson (University of Minnesota)

Presentation materials