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用于光阱和激光制导系统设计的无量纲参数。

Dimensionless parameters for the design of optical traps and laser guidance systems.

作者信息

Nahmias Yaakov K, Gao Bruce Zhi, Odde David J

机构信息

Department of Biomedical Engineering, University of Minnesota, 7-104 Biological Sciences Biomedical Engineering, 312 Church Street S.E., Minneapolis, Minnesota 55455, USA.

出版信息

Appl Opt. 2004 Jul 10;43(20):3999-4006. doi: 10.1364/ao.43.003999.

Abstract

Optical traps are routinely used for the manipulation of neutral particles. However, optical trap design is limited by the lack of an accurate theory. The generalized Lorenz-Mie theory (GLMT) solves the scattering problem for arbitrary particle size and predicts radial forces accurately. Here we show that the GLMT predicts the observed radial and axial forces in a variety of optical manipulators. We also present a dimensionless parameter beta for the prediction of axial forces. Coupled with our correlation for radial escape forces, we now have a set of two simple correlations for the practical design of radiation-force-based systems.

摘要

光镊通常用于中性粒子的操控。然而,光镊设计因缺乏精确理论而受到限制。广义洛伦兹 - 米氏理论(GLMT)解决了任意粒径的散射问题,并能准确预测径向力。在此我们表明,GLMT能预测各种光操控器中观测到的径向力和轴向力。我们还提出了一个用于预测轴向力的无量纲参数β。结合我们对径向逃逸力的相关性,我们现在有了一组两个简单的相关性,可用于基于辐射力系统的实际设计。

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