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Parallel Assembly of Arbitrary Defect-Free Atom Arrays with a Multitweezer Algorithm

  • Weikun Tian
  • , Wen Jun Wee
  • , An Qu
  • , Billy Jun Ming Lim
  • , Prithvi Raj Datla
  • , Vanessa Pei Wen Koh
  • , Huanqian Loh
  • National University of Singapore

科研成果: 期刊稿件文章同行评审

摘要

Defect-free atom arrays are a precursor for quantum information processing and quantum simulation with neutral atoms. Yet, large-scale defect-free atom arrays can be challenging to realize, due to the losses encountered when rearranging stochastically loaded atoms to achieve a desired target array. Here, we demonstrate a parallel rearrangement algorithm that uses multiple mobile tweezers to independently sort and compress atom arrays in a way that naturally avoids atom collisions. With a high degree of parallelism, our algorithm offers a reduced move complexity compared to both single-tweezer algorithms and existing multitweezer algorithms. We further determine the optimal degree of parallelism to be a balance between an algorithmic speedup and multitweezer inhomogeneity effects. The defect-free probability for a 225-atom array is demonstrated to be as high as 33(1)% in a room-temperature setup after multiple cycles of rearrangement. The algorithm presented here can be implemented for any target array geometry with an underlying periodic structure.

源语言英语
文章编号034048
期刊Physical Review Applied
19
3
DOI
出版状态已出版 - 3月 2023
已对外发布

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