论文标题

面条很重要

Fracton Matter

论文作者

Gromov, Andrey, Radzihovsky, Leo

论文摘要

我们回顾了“分布量”的迅速发展的领域,即准粒子严格不动或显示限制的移动性,可以通过广义的多极对称性和相关的保护定律来理解。我们将仅关注这个快速发展的主题的角落,我们将演示一类这样的理论如何 - 对称张量和耦合 - 矢量规定理论令人惊讶地来自二维量子晶体的熟悉弹性。披露和脱位晶体缺陷分别映射到分形式仪表理论的电荷和偶极子上。这种分形式弹性双重性二元性会导致分形相和量子相变为其后代的预测,后者是相当晶体的双重晶体,超氧,近晶,近晶液液晶体,以及无态固体,非态固体,准晶体和弹性膜。我们展示了这些双重规理论如何通过广义的希格斯机制提供量子熔化跃迁的字段理论描述。我们演示了如何将它们等效地构造为具有全局多极对称性的测量模型。我们预计,这种规格弹性二元性扩展到广义弹性理论为发现新的分形模型及其潜在的实验实现提供了途径。

We review a burgeoning field of "fractons" -- a class of models where quasi-particles are strictly immobile or display restricted mobility that can be understood through generalized multipolar symmetries and associated conservation laws. Focusing on just a corner of this fast-growing subject, we will demonstrate how one class of such theories -- symmetric tensor and coupled-vector gauge theories surprisingly emerge from familiar elasticity of a two-dimensional quantum crystal. The disclination and dislocation crystal defects respectively map onto charges and dipoles of the fracton gauge theory. This fracton-elasticity duality leads to predictions of fractonic phases and quantum phase transitions to their descendants, that are duals of the commensurate crystal, supersolid, smectic, hexatic liquid crystals, as well as amorphous solids, quasi-crystals and elastic membranes. We show how these dual gauge theories provide a field theoretic description of quantum melting transitions through a generalized Higgs mechanism. We demonstrate how they can be equivalently constructed as gauged models with global multipole symmetries. We expect extensions of such gauge-elasticity dualities to generalized elasticity theories provide a route to discovery of new fractonic models and their potential experimental realizations.

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