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首页> 外文期刊>Physical review letters >Complex Density Wave Orders and Quantum Phase Transitions in a Model of Square-Lattice Rydberg Atom Arrays
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Complex Density Wave Orders and Quantum Phase Transitions in a Model of Square-Lattice Rydberg Atom Arrays

机译:方格里德堡原子阵列模型中的复数密度波阶和量子相变

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摘要

We describe the zero-temperature phase diagram of a model of a two-dimensional square-lattice array of neutral atoms, excited into Rydberg states and interacting via strong van der Waals interactions. Using the density-matrix renormalization group algorithm, we map out the phase diagram and obtain a rich variety of phases featuring complex density wave orderings, upon varying lattice spacing and laser detuning. While some of these phases result from the classical optimization of the van der Waals energy, we also find intrinsically quantum-ordered phases stabilized by quantum fluctuations. These phases are surrounded by novel quantum phase transitions, which we analyze by finite-size scaling numerics and Landau theories. Our work highlights Rydberg quantum simulators in higher dimensions as promising platforms to realize exotic many-body phenomena.
机译:我们描述了中性原子的二维方格阵列的模型的零温度相图,该模型被激发成Rydberg态并通过强范德华相互作用而相互作用。使用密度矩阵重新归一化群算法,我们绘制了相图,并通过改变晶格间距和激光失谐获得了具有复杂密度波排序的丰富多样的相位。尽管其中一些相位是范德华能量的经典优化产生的结果,但我们也发现了固有的由量子涨落稳定的量子有序相。这些相被新颖的量子相变包围,我们将通过有限尺寸缩放数值和Landau理论对其进行分析。我们的工作着重强调高维Rydberg量子仿真器作为实现奇异多体现象的有希望的平台。

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