论文标题

在Ising转变处的更高形式的对称性破裂

Higher-form symmetry breaking at Ising transitions

论文作者

Zhao, Jiarui, Yan, Zheng, Cheng, Meng, Meng, Zi Yang

论文摘要

近年来,超出对称性破坏范围的物质的新阶段正在持续,为了赶上这一快速发展,引入了全球对称性的新观念。其中,高形式的对称性在空间上扩展了对称性电荷,可用于将拓扑排序的阶段描述为对称性的自发断裂,因此在相同的概念框架下统一了非常规和常规阶段。但是,除了某些可解决的模型外,这种概念工具尚未被列入定量测试,因此将其在更通用的量子系统中限制了许多体系。在这项工作中,我们研究了Z2高格式对称性在量子模型中,该模型对全局(0形)Ising对称性是双重的。我们计算Ising障碍算子的期望值,这是高形式对称性的非本地阶阶参数,在自由标量理论中分析,并通过公正的量子蒙特卡洛模拟(2+1)d中的相互作用的固定点。从这个扩展对象的缩放形式来看,我们确认高形式的对称性确实在顺磁性或量子无序相位(从Landau意义上)中自发损坏,但在铁磁/有序阶段仍然保持对称。在Ising临界点,我们发现即使保留了0形式的对称性,更高形式的对称性也会自发损坏。我们讨论了在动量空间中具有无间隙点的编辑imension-1歧管的系统中,保留了全局0形式对称性和双重高格式对称性的示例。这些结果提供了更高形式的对称运算符的非平凡的工作示例,包括在交互的保形场理论中首次计算单一形式订单参数,并为其在量子多体系统中的通用实现开辟了途径。

In recent years, new phases of matter that are beyond the Landau paradigm of symmetry breaking are mountaining, and to catch up with this fast development, new notions of global symmetry are introduced. Among them, the higher-form symmetry, whose symmetry charges are spatially extended, can be used to describe topologically ordered phases as the spontaneous breaking of the symmetry, and consequently unify the unconventional and conventional phases under the same conceptual framework. However, such conceptual tools have not been put into quantitative test except for certain solvable models, therefore limiting its usage in the more generic quantum manybody systems. In this work, we study Z2 higher-form symmetry in a quantum Ising model, which is dual to the global (0-form) Ising symmetry. We compute the expectation value of the Ising disorder operator, which is a non-local order parameter for the higher-form symmetry, analytically in free scalar theories and through unbiased quantum Monte Carlo simulations for the interacting fixed point in (2+1)d. From the scaling form of this extended object, we confirm that the higher-form symmetry is indeed spontaneously broken inside the paramagnetic, or quantum disordered phase (in the Landau sense), but remains symmetric in the ferromagnetic/ordered phase. At the Ising critical point, we find that the higher-form symmetry is also spontaneously broken, even though the 0-form symmetry is preserved. We discuss examples where both the global 0-form symmetry and the dual higher-form symmetry are preserved, in systems with a codimension-1 manifold of gapless points in momentum space. These results provide non-trivial working examples of higher-form symmetry operators, including the first computation of one-form order parameter in an interacting conformal field theory, and open the avenue for their generic implementation in quantum many-body systems.

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