Aspects of categorical symmetries from branes: SymTFTs and generalized charges

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY SciPost Physics Pub Date : 2024-07-29 DOI:10.21468/scipostphys.17.1.025
Fabio Apruzzi, Federico Bonetti, Dewi S. W. Gould, Sakura Schäfer-Nameki
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Abstract

Recently it has been observed that branes in geometric engineering and holography have a striking connection with generalized global symmetries. In this paper we argue that branes, in a certain topological limit, not only furnish the symmetry generators, but also encode the so-called Symmetry Topological Field Theory (or SymTFT). For a $d$-dimensional QFT, this is a $(d+1)$-dimensional topological field theory, whose topological defects encode both the symmetry generators (invertible or non-invertible) and the generalized charges. Mathematically, the topological defects form the Drinfeld center of the symmetry category of the QFT. In this paper we derive the SymTFT and the Drinfeld center topological defects directly from branes. Central to the identification of these are Hanany-Witten brane configurations, which encode both topological couplings in the SymTFT and the generalized charges under the symmetries. We exemplify the general analysis with examples of QFTs realized in geometric engineering or holography.
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来自支链的分类对称性的各个方面:SymTFT 和广义电荷
最近人们发现,几何工程学和全息学中的支链与广义全局对称性有着惊人的联系。在本文中,我们认为支链在一定的拓扑极限中不仅提供了对称发生器,而且还编码了所谓的对称拓扑场论(或 SymTFT)。对于一个 $d$ 维的 QFT,这是一个 $(d+1)$ 维的拓扑场论,其拓扑缺陷同时编码了对称发生器(可逆或不可 逆反)和广义电荷。在数学上,拓扑缺陷构成了 QFT 对称范畴的德林菲尔德中心。在本文中,我们直接从支链推导出 SymTFT 和 Drinfeld 中心拓扑缺陷。识别这些缺陷的核心是哈尼-维滕(Hanany-Witten)布兰构型,它同时编码了 SymTFT 中的拓扑耦合和对称性下的广义电荷。我们以几何工程学或全息学中实现的 QFT 为例,对一般分析进行了例证。
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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来源期刊
SciPost Physics
SciPost Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
8.20
自引率
12.70%
发文量
315
审稿时长
10 weeks
期刊介绍: SciPost Physics publishes breakthrough research articles in the whole field of Physics, covering Experimental, Theoretical and Computational approaches. Specialties covered by this Journal: - Atomic, Molecular and Optical Physics - Experiment - Atomic, Molecular and Optical Physics - Theory - Biophysics - Condensed Matter Physics - Experiment - Condensed Matter Physics - Theory - Condensed Matter Physics - Computational - Fluid Dynamics - Gravitation, Cosmology and Astroparticle Physics - High-Energy Physics - Experiment - High-Energy Physics - Theory - High-Energy Physics - Phenomenology - Mathematical Physics - Nuclear Physics - Experiment - Nuclear Physics - Theory - Quantum Physics - Statistical and Soft Matter Physics.
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