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The emergence of gauge invariance: The stay-at-home gauge versus local-global duality

机译:量规不变性的出现:留在家中的量规与局部-全局对偶

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摘要

In condensed matter physics, gauge symmetries other than the U(1) of electromagnetism are of an emergent nature. Two emergence mechanisms for gauge symmetry are well established: the way in which it arises in Kramers-Wannier type local-global dualities, and the way in which local constraints encountered in (doped) Mott insulators are encoded. We demonstrate that these gauge structures are closely related, and appear as counterparts in the canonical and field-theoretical languages. The restoration of symmetry in a disorder phase transition is due to having the original local variables subjected to a coherent superposition of all possible topological defect configurations, with the effect that correlation functions are no longer well-defined. This is completely equivalent to assigning gauge freedom to those variables. Two cases are considered explicitly: the well-known vortex duality in bosonic Mott insulators serves to illustrate the principle; and the acquired wisdom is then applied to the less familiar context of dualities in quantum elasticity, where we elucidate the relation between the quantum nematic and linearized gravity. We reflect on some deeper implications for the emergence of gauge symmetry in general.
机译:在凝聚态物理学中,电磁的U(1)以外的规范对称性是新兴的。规范对称性的两种出现机制已经很好地建立:在Kramers-Wannier型局部-全局对偶中出现的方式,以及(掺杂)Mott绝缘子中遇到的局部约束的编码方式。我们证明了这些规范的结构是紧密相关的,并且在规范语言和领域理论语言中以对等形式出现。无序相变中对称性的恢复是由于原始局部变量经历了所有可能的拓扑缺陷配置的相干叠加,其结果是相关函数不再得到很好的定义。这完全等同于为这些变量分配量规自由度。明确考虑了两种情况:玻色Mott绝缘子中众所周知的涡旋对偶性说明了这一原理;然后,将获得的智慧应用于量子弹性对偶性不太为人所知的上下文中,在这里我们阐明了量子向列与线性化引力之间的关系。我们将反思一些对于规范对称性出现的更深层含义。

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