论文标题

连续的对称性破裂在被困的离子自旋链中

Continuous Symmetry Breaking in a Trapped-Ion Spin Chain

论文作者

Feng, Lei, Katz, Or, Haack, Casey, Maghrebi, Mohammad, Gorshkov, Alexey V., Gong, Zhexuan, Cetina, Marko, Monroe, Christopher

论文摘要

表现出连续对称性的一维系统只能在足够长的相互作用的情况下以真实的长距离顺序构成物质的量子阶段。但是,在大多数物理系统中,相互作用是短距离的,阻碍了此类阶段在一个维度上的出现。在这里,我们使用一维的捕获量子量子模拟器来制备具有远距离旋转顺序的状态,该状态延伸到系统尺寸高达$ 23 $的旋转,并且是物质连续破坏对称阶段的特征。我们的准备工作依赖于同时控制一系列紧密焦点的个性化的激光束,从而产生远程自旋旋转相互作用。我们还观察到一个无序相关性的阶段。我们进一步研究了相互作用的不同范围和对对称性扰动的不平衡反应的相位。这项工作为研究新的量子阶段和低维系统中的不平衡动力学开辟了途径。

One-dimensional systems exhibiting a continuous symmetry can host quantum phases of matter with true long-range order only in the presence of sufficiently long-range interactions. In most physical systems, however, the interactions are short-ranged, hindering the emergence of such phases in one dimension. Here we use a one-dimensional trapped-ion quantum simulator to prepare states with long-range spin order that extends over the system size of up to $23$ spins and is characteristic of the continuous symmetry-breaking phase of matter. Our preparation relies on simultaneous control over an array of tightly focused individual-addressing laser beams, generating long-range spin-spin interactions. We also observe a disordered phase with frustrated correlations. We further study the phases at different ranges of interaction and the out-of-equilibrium response to symmetry-breaking perturbations. This work opens an avenue to study new quantum phases and out-of-equilibrium dynamics in low-dimensional systems.

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