聚焦部分相干洛梅尔-高斯光束对两类粒子的光捕获力

Wen Zuo, Yannan Han, Zhengxian Zhou, Hua-Feng Xu, Zhenglan Zhou, Qu Jun
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引用次数: 4

摘要

为了探讨聚焦部分相干洛梅尔-高斯光束(PCLGB)对两种不同折射率粒子的捕获,数值推导了其强度表达式,并对其分布进行了模拟。我们发现聚焦后的PCLGB能够分别捕捉焦平面上不同位置的两个高折射率粒子和焦点处的一个低折射率粒子。当轨道角动量(OAM)量子数、透镜焦距、不对称参数减小,空间相关长度和光束腰增大时,聚焦PCLGB的横向梯度力增大;当OAM量子数、透镜焦距、不对称参数、空间相关长度减小,光束腰增大时,聚光PCLGB的轴向梯度力和散射力增大。我们可以选择最佳的光学和透镜参数,实现大范围和稳定的捕获。所得结果对聚焦PCLGB在显微操作技术和生物技术中的应用具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical Trapping Force on Two Types of Particles with a Focused Partially Coherent Lommel-Gaussian Beam
In order to explore the capture of two types of particles with different refractive-indexes with focused partially coherent Lommel-Gaussian beam (PCLGB), we numerically derived the expressions of the intensity, and its distribution is also simulated. We found that the focused PCLGB is able to capture two high refractive-index particles at different positions on the focal plane and a low refractive-index particle at the focus, respectively. when the orbital angular momentum(OAM)quantum number, lens focal length, asymmetry parameter decreased, and the spatial correlation length and beam waist increased, the transverse gradient force of the focused PCLGB increased; when the OAM quantum number, lens focal length, asymmetry parameter, spatial correlation length decreased and the beam waist increased, the axial gradient force and scattering force of the focused PCLGB increased. We can choose the optimum optical and lens parameters, a large range and stable trapping can be achieved. The obtained results have certain reference value for the focused PCLGB applied in micromanipulation technology and biotechnology.
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