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用于全息光镊的快速倾斜平面格尔奇贝格-萨克斯顿算法

Rapid tilted-plane Gerchberg-Saxton algorithm for holographic optical tweezers.

作者信息

Cai Yanan, Yan Shaohui, Wang Zhaojun, Li Runze, Liang Yansheng, Zhou Yuan, Li Xing, Yu Xianghua, Lei Ming, Yao Baoli

出版信息

Opt Express. 2020 Apr 27;28(9):12729-12739. doi: 10.1364/OE.389897.

Abstract

Benefitting from the development of commercial spatial light modulator (SLM), holographic optical tweezers (HOT) have emerged as a powerful tool for life science, material science and particle physics. The calculation of computer-generated holograms (CGH) for generating multi-focus arrays plays a key role in HOT for trapping of a bunch of particles in parallel. To realize dynamic 3D manipulation, we propose a new tilted-plane GS algorithm for fast generation of multiple foci. The multi-focal spots with a uniformity of 99% can be generated in a tilted plane. The computation time for a CGH with 512×512 pixels is less than 0.1 second. We demonstrated the power of the algorithm by simultaneously trapping and rotating silica beads with a 7×7 spots array in three dimensions. The presented algorithm is expected as a powerful kernel of HOT.

摘要

受益于商用空间光调制器(SLM)的发展,全息光镊(HOT)已成为生命科学、材料科学和粒子物理学中的一种强大工具。用于生成多焦点阵列的计算机生成全息图(CGH)计算在HOT中对一束粒子进行并行捕获起着关键作用。为了实现动态三维操纵,我们提出了一种新的倾斜平面GS算法来快速生成多个焦点。可以在倾斜平面中生成均匀性为99%的多焦点光斑。对于512×512像素的CGH,计算时间不到0.1秒。我们通过使用7×7光斑阵列在三维空间中同时捕获和旋转二氧化硅珠,展示了该算法的强大功能。所提出的算法有望成为HOT的一个强大内核。

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