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任意入射角的TE偏振非傍轴聚焦高斯光片照射下椭圆圆柱体上的辐射力和扭矩

Radiation force and torque on an elliptical cylinder illuminated by a TE-polarized non-paraxial focused Gaussian light sheet with arbitrary incidence.

作者信息

Mitri F G

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2020 Feb 1;37(2):265-275. doi: 10.1364/JOSAA.379851.

Abstract

Predicting and computing the optical radiation force and torque experienced by an elliptical cylinder illuminated by a structured finite light-sheet beam in two dimensions (2D) remains a challenge from the standpoint of light-matter interactions in electromagnetic (EM) optics, tweezers, laser trapping, and scattering theory. In this work, the partial-wave series expansion method in cylindrical coordinates (which utilizes standard Bessel and Hankel wave functions) is proposed, verified, and validated. Exact expressions for the longitudinal and transverse radiation force components (per length) as well as the axial radiation torque component (per length) are derived analytically without any approximations. The example of a TE-polarized non-paraxial focused Gaussian light sheet illuminating a perfect electrically conducting (PEC) elliptical cylinder is considered. The scattering coefficients of the elliptical cylinder are determined by imposing the Neumann boundary condition and numerically solving a linear system of equations by matrix inversion. The structural functions are determined using a single numerical angular integration procedure to enforce the orthogonality and thus validity of the solution, making the proposed method semi-analytical. Calculations are performed for the non-dimensional longitudinal and transverse radiation force efficiencies (or functions) as well as the axial radiation torque efficiency. Emphases are given to varying the ellipticity of the cylindrical particle, its non-dimensional size, the non-paraxial beam waist (i.e., focusing), and the angle of incidence in the polar plane. Suitable convergence plots confirm the validity of the partial-wave series method to evaluate accurately the radiation force and torque with no limitation to a particular frequency range or particle size. The results are mostly relevant in understanding the fundamentals of the optical/EM radiation force and torque theories for structured focused light sheets and related applications dealing with the interactions of EM waves with elongated tubular particles with elliptical surfaces in particle manipulation and other areas. The analogy with the acoustical counterpart is also noted, which shows the universal character of the radiation force and torque phenomena.

摘要

从电磁(EM)光学、镊子、激光捕获和散射理论中的光与物质相互作用的角度来看,预测和计算二维(2D)结构化有限光片光束照射下椭圆圆柱体所经历的光辐射力和扭矩仍然是一个挑战。在这项工作中,提出、验证并确认了圆柱坐标系中的分波级数展开方法(该方法利用标准贝塞尔和汉克尔波函数)。纵向和横向辐射力分量(每单位长度)以及轴向辐射扭矩分量(每单位长度)的精确表达式是通过解析推导得出的,没有任何近似。考虑了TE偏振非傍轴聚焦高斯光片照射理想导电(PEC)椭圆圆柱体的例子。通过施加诺伊曼边界条件并通过矩阵求逆数值求解线性方程组来确定椭圆圆柱体的散射系数。使用单个数值角积分程序来确定结构函数,以确保解的正交性从而保证其有效性,使所提出的方法具有半解析性。对无量纲纵向和横向辐射力效率(或函数)以及轴向辐射扭矩效率进行了计算。重点研究了圆柱粒子的椭圆率、其无量纲尺寸、非傍轴光束腰(即聚焦)以及极平面中的入射角的变化。合适的收敛图证实了分波级数方法在准确评估辐射力和扭矩方面的有效性,且不受特定频率范围或粒子尺寸的限制。这些结果对于理解结构化聚焦光片的光学/电磁辐射力和扭矩理论的基本原理以及处理电磁波与具有椭圆表面的细长管状粒子在粒子操纵和其他领域相互作用的相关应用最为相关。还指出了与声学对应物的类比,这显示了辐射力和扭矩现象的普遍性。

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