论文标题

与Zernike全息图的暗粒颗粒的灵巧全息诱捕

Dexterous holographic trapping of dark-seeking particles with Zernike holograms

论文作者

Abacousnac, Jatin, Grier, David G.

论文摘要

全息照射的光学陷阱的强度分布可以量身定制为颗粒的物理特性,其旨在陷阱。动态优化是特别理想的,对于操纵被传统光学镊子排斥的寻求黑暗寻求的颗粒,而当寻求黑暗寻求粒子与寻求轻粒子同一系统共存时,则更是如此。我们通过引入一类“黑暗”陷阱来解决对黑暗寻求颗粒的巧妙操纵的需求,该陷阱是由两个具有不同腰部直径不同的相位外高斯模式的叠加产生的。干扰高斯(Dog)陷阱的干扰会产生一个深色的中心核心,该核心完全被光包围,因此可以在三个维度上严格地捕获黑暗寻求的颗粒。狗陷阱可以与常规的光学镊子和其他类型的陷阱结合使用,用于异质样品。我们是纯粹是真实价值的狗陷阱的理想全息图,我们引入了一种基于Zernike相位对比原理的通用方法,用于投影实值全息图,并具有用于标准全息光照相捕获系统的相位衍射光学元件。我们通过对液体培养基中的高指数,低索引和吸收胶体颗粒的实验研究来证明狗陷阱(和Zernike全息图)的能力。

The intensity distribution of a holographically-projected optical trap can be tailored to the physical properties of the particles it is intended to trap. Dynamic optimization is especially desirable for manipulating dark-seeking particles that are repelled by conventional optical tweezers, and even more so when dark-seeking particles coexist in the same system as light-seeking particles. We address the need for dexterous manipulation of dark-seeking particles by introducing a class of "dark" traps created from the superposition of two out-of-phase Gaussian modes with different waist diameters. Interference in the difference-of-Gaussians (DoG) trap creates a dark central core that is completely surrounded by light and therefore can trap dark-seeking particles rigidly in three dimensions. DoG traps can be combined with conventional optical tweezers and other types of traps for use in heterogeneous samples. The ideal hologram for a DoG trap being purely real-valued, we introduce a general method based on the Zernike phase-contrast principle to project real-valued holograms with the phase-only diffractive optical elements used in standard holographic optical trapping systems. We demonstrate the capabilities of DoG traps (and Zernike holograms) through experimental studies on high-index, low-index and absorbing colloidal particles dispersed in fluid media.

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