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Localization and Symmetry Breaking in the Quantum Quasiperiodic Ising Glass

机译:Quantum Quasiodic ising玻璃中的定位和对称性

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Quasiperiodic modulation can prevent isolated quantum systems from equilibrating by localizing their degrees of freedom. In this article, we show that such systems can exhibit dynamically stable long-range orders forbidden in equilibrium. Specifically, we show that the interplay of symmetry breaking and localization in the quasiperiodic quantum Ising chain produces a quasiperiodic Ising glass stable at all energy densities. The glass order parameter vanishes with an essential singularity at the melting transition with no signatures in the equilibrium properties. The zero-temperature phase diagram is also surprisingly rich, consisting of paramagnetic, ferromagnetic, and quasiperiodically alternating ground-state phases with extended, localized, and critically delocalized low-energy excitations. The system exhibits an unusual quantum Ising transition whose properties are intermediate between those of the clean and infinite randomness Ising transitions. Many of these results follow from a geometric generalization of the Aubry-André duality that we develop. The quasiperiodic Ising glass may be realized in near-term quantum optical experiments.
机译:QuaSipheriodic调制可以通过定位其自由度来防止隔离量子系统平衡。在本文中,我们表明,这些系统可以在平衡中禁止动态稳定的远程订单。具体而言,我们表明,QuaSipheri周期量子ising链中对称性破碎和定位的相互作用在所有能量密度下产生QuaSipheriodic Ising玻璃稳定。玻璃订单参数在熔化过渡时以必要的奇点消失,在平衡性质中没有差异。零温度相图也令人惊讶地丰富,由顺磁,铁磁和QuaSiperiodically交替的地面阶段,其具有延伸,局部化和批判性划分的低能量激励。该系统表现出一种不寻常的量子ising转换,其性质在清洁和无无量子呈转变的那些之间的中间体。这些结果中的许多结果是我们发展的Aubry-André二元性的几何概括。 QuaSipheriodic Ising玻璃可以在近期量子光学实验中实现。

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