论文标题
rydberg相互作用原子的组装阵列
Assembled arrays of Rydberg-interacting atoms
论文作者
论文摘要
带有Rydberg介导的相互作用的单个原子组装的阵列为模拟多体旋转汉密尔顿人以及实施基于通用门的量子信息处理提供了一个强大的平台。我们证明了Rydberg激发的首次实现和可重新配置几何形状的Microlens生成的多站点陷阱阵列中的受控相互作用。我们利用原子组装来确定性制备具有完全已知的相互分离和可选相互作用强度的Rubidium rydberg原子的预定2D结构。通过调整几何形状和所涉及的Rydberg状态,可以访问从弱相互作用到强耦合的参数制度。我们表征了状态$ \ mathrm {57d_ {5/2}} $的非相互作用原子簇的同时相干激发,并分析实验参数和限制。对于针对Rydberg Blockade优化的配置,使用状态$ \ MATHRM {87D_ {5/2}}} $,我们观察到集体增强的Rabi振荡。
Assembled arrays of individual atoms with Rydberg-mediated interactions provide a powerful platform for the simulation of many-body spin Hamiltonians as well as the implementation of universal gate-based quantum information processing. We demonstrate the first realization of Rydberg excitations and controlled interactions in microlens-generated multisite trap arrays of reconfigurable geometry. We utilize atom-by-atom assembly for the deterministic preparation of pre-defined 2D structures of rubidium Rydberg atoms with exactly known mutual separations and selectable interaction strength. By adapting the geometry and the addressed Rydberg state, a parameter regime spanning from weak interactions to strong coupling can be accessed. We characterize the simultaneous coherent excitation of non-interacting atom clusters for the state $\mathrm{57D_{5/2}}$ and analyze the experimental parameters and limitations. For configurations optimized for Rydberg blockade utilizing the state $\mathrm{87D_{5/2}}$, we observe collectively enhanced Rabi oscillations.