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Discrete sliding symmetries, dualities, and self-dualities of quantum orbital compass models and p+ip superconducting arrays

机译:量子轨道罗盘模型和p + ip超导阵列的离散滑动对称性,对偶性和对偶性

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摘要

We study the spin-1/2 two- and three-dimensional orbital compass models relevant to the problem of orbital ordering in transition metal oxides. We show that these systems display self-dualities and gauge-like discrete sliding symmetries. An important and surprising consequence is that these models are dual to (seemingly unrelated) recently studied models of p+ip superconducting arrays. The duality transformations are constructed by means of a path-integral representation in discretized imaginary time and considering its Z_2 spatial reflection symmetries and space-time discrete rotations, we obtain, in a transparent unified geometrical way, several dualities. We also introduce an alternative construction of the duality transformations using operator identities. We discuss the consequences of these dualities for the order parameters and phase transitions of the orbital compass model and its generalizations, and apply these ideas to a number of related systems.
机译:我们研究了与过渡金属氧化物中的轨道有序问题有关的自旋1/2二维和三维轨道罗盘模型。我们表明,这些系统显示出自对偶性和类似轨距的离散滑动对称性。一个重要且令人惊讶的结果是,这些模型与最近研究的p + ip超导阵列模型是双重的(看似无关)。对偶变换通过离散假想时间内的路径积分表示构造,并考虑其Z_2空间反射对称性和时空离散旋转,以透明的统一几何方式获得了几个对偶。我们还介绍了使用运算符标识对偶变换的另一种构造。我们讨论了这些对偶性对轨道罗盘模型的阶数参数和相变及其泛化的影响,并将这些思想应用于许多相关系统。

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