Symmetry defects and orbifolds of two-dimensional Yang–Mills theory

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作者
Lukas Müller
Richard J. Szabo
Lóránt Szegedy
机构
[1] Heriot-Watt University,Department of Mathematics
[2] Maxwell Institute for Mathematical Sciences,Dipartimento di Scienze e Innovazione Tecnologica
[3] The Higgs Centre for Theoretical Physics,undefined
[4] Università del Piemonte Orientale,undefined
[5] Arnold–Regge Centre,undefined
[6] University of Vienna,undefined
[7] Faculty of Physics,undefined
[8] Max Planck Institute for Mathematics,undefined
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摘要
We describe discrete symmetries of two-dimensional Yang–Mills theory with gauge group G associated with outer automorphisms of G, and their corresponding defects. We show that the gauge theory partition function with defects can be computed as a path integral over the space of twisted G-bundles and calculate it exactly. We argue that its weak-coupling limit computes the symplectic volume of the moduli space of flat twisted G-bundles on a surface. Using the defect network approach to generalised orbifolds, we gauge the discrete symmetry and construct the corresponding orbifold theory, which is again two-dimensional Yang–Mills theory but with gauge group given by an extension of G by outer automorphisms. With the help of the orbifold completion of the topological defect bicategory of two-dimensional Yang–Mills theory, we describe the reverse orbifold using a Wilson line defect for the discrete gauge symmetry. We present our results using two complementary approaches: in the lattice regularisation of the path integral, and in the functorial approach to area-dependent quantum field theories with defects via regularised Frobenius algebras.
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