Atom(片上系统)
高能中性原子
材料科学
原子物理学
纳米技术
计算机科学
物理
并行计算
核物理学
电子
作者
Rui Lin,Han-Sen Zhong,You Li,Zhang-Rui Zhao,Liyan Zheng,T. Hu,Hongming Wu,Zhan Wu,Weijie Ma,Yan Gao,Y. Zhu,Zhaofeng Su,Wanli Ouyang,Yuchen Zhang,Jun Rui,Ming-Cheng Chen,Chao‐Yang Lu,Jian-Wei Pan
摘要
Assembling increasingly larger-scale defect-free optical-tweezer-trapped atom arrays is essential for quantum computation and quantum simulations based on atoms. Here, we propose an AI-enabled, rapid, constant-time-overhead rearrangement protocol, and we experimentally assemble defect-free 2D and 3D atom arrays with up to 2024 atoms with a constant-time cost of 60 ms. The AI model calculates the holograms for real-time atom rearrangement. With precise controls over both position and phase, a high-speed spatial light modulator moves all the atoms simultaneously. This protocol can be readily used to generate defect-free arrays of tens of thousands of atoms with current technologies and become a useful toolbox for quantum error correction.
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