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Calculation of the radiation trapping force for laser tweezers by use of generalized Lorenz-Mie theory. II. On-axis trapping force

机译:使用广义的Lorenz-Mie理论计算激光镊子的辐射捕获力。二。轴向捕捉力

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摘要

The efficiency of trapping an on-axis spherical particle by use of laser tweezers for a particle size from the Rayleigh limit to the ray optics limit is calculated from generalized Lorenz-Mie light-scattering theory and the localized version of a Gaussian beam that has been truncated and focused by a high-numerical-aperture lens and that possesses spherical aberration as a result of its transmission through the wall of the sample cell. The results are compared with both the experimental trapping efficiency and the theoretical efficiency obtained from use of the localized version of a freely propagating focused Gaussian beam. The predicted trapping efficiency is found to decrease as a function of the depth of the spherical particle in the sample cell owing to an increasing amount of spherical aberration. The decrease in efficiency is also compared with experiment.
机译:根据广义的Lorenz-Mie光散射理论和高斯光束的局域化形式,使用激光镊子捕获从瑞利极限到射线光学极限的粒径的同轴球状颗粒的效率得到了计算。被高数值孔径的镜头截断并聚焦,由于其穿过样品池壁而具有球差。将结果与实验捕获效率和通过使用自由传播的聚焦高斯光束的局域化版本获得的理论效率进行了比较。由于球形像差的增加,预计捕集效率随样品池中球形颗粒深度的变化而降低。效率的降低也与实验进行了比较。

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  • 来源
    《Applied optics》 |2004年第12期|共10页
  • 作者

    James A. Lock;

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  • 正文语种 eng
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