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Some Lower Dimensional Quantum Field Theories Reduced from Chern-Simons Gauge Theories

arXiv:2405.09473 · doi:10.1103/PhysRevD.110.085019

Abstract

We study symmetry reductions in the context of Euclidean Chern-Simons gauge theories to obtain lower dimensional field theories. Symmetry reduction in certain gauge theories is a common tool for obtaining explicit soliton solutions. Although pure Chern-Simons theories do not admit solitonic solutions, symmetry reduction still leads to interesting results. We establish relations at the semiclassical regime between pure Chern-Simons theories on and the reduced Quantum Field Theories, based on actions obtained by the symmetry reduction of the Chern-Simons action, spherical symmetry being the prominent one. We also discuss symmetry reductions of Chern-Simons theories on the disk, yielding -theory in two dimensions, which signals a curious relationship between symmetry reductions and the boundary conformal field theories. Finally, we study the Chern-Simons-Higgs instantons and show that under certain circumstances, the reduced action can formally be viewed as the action of a supersymmetric quantum mechanical model. We discuss the extent to which the reduced actions have a fermionic nature at the level of the partition function.

47 pages, presentation improved, a section on disk reductions added. (This paper previously appeared as arXiv:2407.17943, which was withdrawn intentionally.)

Some Lower Dimensional Quantum Field Theories Reduced from Chern-Simons Gauge Theories · wovepaper