Towards All Categorical Symmetries in 2+1 Dimensions

Mathew Bullimore, Jamie J. Pearson
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Abstract

We investigate the most general gauging operations in 2+1 dimensional oriented field theories with finite symmetry groups, which correspond to gapped boundary conditions in 3+1 dimensional Dijkgraaf-Witten theory. The classification is achieved by enumerating 2+1 dimensional oriented topological quantum field theories that cancel the 't Hooft anomaly associated with the symmetry. This framework is rigorously formulated using twisted crossed extensions of modular fusion categories and projective 3-representations. Additionally, we explore the resulting fusion 2-category symmetries and argue that this framework captures all possible categorical symmetries in 2+1 dimensional oriented field theories.
迈向 2+1 维度中的所有分类对称性
我们研究了具有有限对称群的 2+1 维定向场论中最一般的测量操作,它对应于 3+1 维 Dijkgraaf-Witten 理论中的间隙边界条件。这种分类是通过列举2+1维定向拓扑量子场论来实现的,这些拓扑量子场论取消了与对称性相关的't Hooft反常'。此外,我们还探讨了由此产生的融合 2 类对称性,并认为这个框架捕捉到了 2+1 维定向场论中所有可能的分类对称性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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