Optical forces in lossless arbitrary refractive index optical trapping and micromanipulation

Leonardo A. Ambrosio, Hugo E. Hernández-Figueroa
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引用次数: 3

Abstract

This paper shows, using both a ray optics approach and in the framework of the generalized Lorenz–Mie theory (GLMT), what happens to the optical forces exerted on a lossless spherical particle with an arbitrary (positive or negative) relative refractive index, allowing the external medium also to be metamaterial. It is shown that the anti-parallelism between the linear momentum p of each photon and the Poynting vector S associated with the propagating wave, observed in negative refractive index media, leads to shifts in the direction of the optical force of a single ray and, consequently, to the total optical force exerted by an arbitrary-shaped laser beam. This extends the possible realizable traps and reveals how arbitrary-shaped laser beams can be used to trap particles with arbitrary refractive indices.

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无损任意折射率光捕获和微操作中的光力
本文利用射线光学方法和广义洛伦兹-米氏理论(GLMT)的框架,展示了施加在具有任意(正或负)相对折射率的无损球形粒子上的光力会发生什么,使得外部介质也可以是超材料。结果表明,在负折射率介质中观测到的每个光子的线性动量p和与传播波相关的坡印亭矢量S之间的反平行性,导致单个光线的光力方向发生变化,从而导致任意形状激光束施加的总光力发生变化。这扩展了可能实现的陷阱,并揭示了如何使用任意形状的激光束来捕获具有任意折射率的粒子。
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