论文标题

增强了任意镊子阵列的逐个原子组装

Enhanced atom-by-atom assembly of arbitrary tweezers arrays

论文作者

Schymik, Kai-Niklas, Lienhard, Vincent, Barredo, Daniel, Scholl, Pascal, Williams, Hannah, Browaeys, Antoine, Lahaye, Thierry

论文摘要

我们报告了[Barredo等人,Science 354,1021(2016)中所述的逐个原子汇编器的功能的改进,我们用来创建光学镊子中超过100个单个原子的完全载荷目标阵列,从随机载荷,半填充的,半填充的初始阵列开始。我们描述了(i)允许减少组装所需的移动次数的分类算法的四种变体,并(ii)启用任意,非规范目标阵列的组装。我们最终在实验上证明了该增强的组装程序在各种目标阵列中的性能。

We report on improvements extending the capabilities of the atom-by-atom assembler described in [Barredo et al., Science 354, 1021 (2016)] that we use to create fully-loaded target arrays of more than 100 single atoms in optical tweezers, starting from randomly-loaded, half-filled initial arrays. We describe four variants of the sorting algorithm that (i) allow decrease the number of moves needed for assembly and (ii) enable the assembly of arbitrary, non-regular target arrays. We finally demonstrate experimentally the performance of this enhanced assembler for a variety of target arrays.

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