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Emergent anomalous higher symmetries from topological order and from dynamical electromagnetic field in condensed matter system

机译:从拓扑顺序和冷凝物系统中的动态电磁场突出的突出的异常对称

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Global symmetry (0-symmetry) acts on the whole space while higher k-symmetry acts on all the codimension-k closed subspaces. The usual condensed matter lattice theories do not include dynamical electromagnetic (EM) field and do not have higher symmetries (unless we engineer fine-tuned toy models). However, for gapped systems, (anomalous) higher symmetries can emerge from the usual condensed matter theories at low energies (usually in a spontaneously broken form). We pointed out that the emergent spontaneously broken higher symmetries are nothing but a kind of topological order. Thus the study of emergent spontaneously broken higher symmetries is a study of topological order. The emergent (anomalous) higher symmetries can be used to constrain possible phase transitions and possible phases induced by certain types of excitations in topological orders. (Anomalous) higher symmetry can also emerge in gapless systems if the gapless excitations contain gapless gauge fields. In particular, EM condensed matter systems that include the dynamical EM field have an emergent anomalous U(1)-1-symmetry below the energy gap of the magnetic monopoles. So EM condensed matter systems can realize some physical phenomena of anomalous higher symmetry. In particular, any gapped liquid phase of an EM condensed matter system (induced by arbitrary fluctuations and condensations of electric charges and photons) must have a nontrivial bosonic topological order.
机译:全局对称(0-Symmetry)在整个空间上起作用,而较高的K对称作用于所有Codimizn-K封闭子空间。通常的冷凝物晶格理论不包括动态电磁(EM)场,并且没有更高的对称性(除非我们工程师进行微调玩具模型)。然而,对于堵塞系统,(异常)较高的对称可以从低能量(通常以自发破碎的形式)从通常的冷凝物理学中出现。我们指出,紧急的自发性破碎的对称性是一种拓扑秩序。因此,对新兴的突然破碎的对称性的研究是对拓扑顺序的研究。出苗(异常)更高的对称性可用于约束可能在拓扑顺序中的某些类型激发诱导的可能相变和可能的阶段。 (异常)如果无间隙激励含有无形测量场,则在无效系统中也可以出现更高的对称性。特别地,包括动态EM场的EM冷凝物质系统具有低于磁垄断的能隙的突出异常U(1)-1对称。因此,EM凝聚物系统可以实现异常较高对称的一些物理现象。特别地,EM冷凝物系的任何覆盖液相(由任意波动和电荷和光子的缩合引起的)必须具有非血清旋转拓扑阶。

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