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Calculation of axial optical forces exerted on medium-sized particles by optical trap

机译:用光阱计算施加在中型粒子上的轴向光学力

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摘要

Optical trapping has become an efficient technique of trapping and manipulating micrometer and sub-micrometer dimension particles. Particles in the range between the applicable regime of ray optics theory (ROT) and the Rayleigh regime (so-called medium-sized particles) are focused on. By using ROT and the generalized Lorenz-Mie theory (GLMT), axial optical forces and their dependences on particle sizes and beam waists are presented. Furthermore, by comparing the numerical results of these two theories, the applicability of the GLMT to particles of arbitrary size and the limit of ROT in the region of small particles are analyzed. A new criterion of the applicable region of ROT is obtained, i.e. the relative particle size beta = 2 pi a/lambda >= 20, where a is the particle radius and A is the wavelength of light. The theoretical results will be of great help to the design and optimization of the most efficient optical trap. (c) 2005 Elsevier Ltd. All rights reserved.
机译:光学捕获已成为捕获和处理微米级和亚微米级尺寸粒子的有效技术。重点关注射线光学理论(ROT)的适用范围和瑞利范围之间的范围内的粒子(所谓的中型粒子)。通过使用ROT和广义的Lorenz-Mie理论(GLMT),提出了轴向光学力及其对粒度和束腰的依赖性。此外,通过比较这两种理论的数值结果,分析了GLMT在任意大小的颗粒上的适用性以及小颗粒区域中ROT的限制。获得了适用于ROT区域的新标准,即相对粒径β= 2 pIA /λ> = 20,其中a是粒子半径,A是光的波长。理论结果将对最有效的光阱的设计和优化有很大帮助。 (c)2005 Elsevier Ltd.保留所有权利。

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