New developments on the design and modeling of fiber optical tweezers

R. S. Rodrigues Ribeiro, P. Jorge, A. Guerreiro
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引用次数: 4

Abstract

The intensity profile of a focused beam of light can exert small drift forces on particles with a few microns and even smaller, which can be used to confine or manipulate them. Optical trapping has several applications, in particular it has been adopted as a powerful tool in biology, allowing, for instance to manipulate in vivo single cells. A wide variety of optical setups have been implemented to optically trap microscopic bodies, however, the single beam trap using a tightly focused Gaussian beam continues to be the most used. Recent developments introduced an alternative to bulk optical trapping systems based on lensed optical fibers. This work presents simulations showing new designs of fiber optic and 2D waveguide tweezers based on studies of the forces acting on dielectric particles immersed in media with a distinct refractive index, which take into account the refractive index and structure of the particles.
光纤镊子设计与建模的新进展
聚焦光束的强度分布可以对几微米甚至更小的粒子施加很小的漂移力,这可以用来限制或操纵它们。光捕获有几个应用,特别是它已被用作生物学中的强大工具,例如允许在体内操纵单细胞。各种各样的光学装置已经被用于光学捕获微观物体,然而,使用紧密聚焦高斯光束的单光束陷阱仍然是最常用的。最近的发展介绍了基于透镜光纤的大块光捕获系统的替代方案。本研究基于浸没在不同折射率介质中的介电粒子所受作用力的研究,将粒子的折射率和结构考虑在内,提出了光纤和二维波导镊子的新设计模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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