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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Reverse orbiting and spinning of a Rayleigh dielectric spheroid in a J(0) Bessel optical beam
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Reverse orbiting and spinning of a Rayleigh dielectric spheroid in a J(0) Bessel optical beam

机译:在J(0)贝塞尔光束中的瑞利介电球体的反向轨道和旋转

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摘要

Based on the electric dipole approximation, numerical computations for the optical orbital and spin radiation torques induced by a zeroth-order Bessel beam on a lossless dielectric subwavelength spheroid with arbitrary orientation in space are performed. The transverse optical force components are determined first, and then used to compute the longitudinal orbital torque component. Moreover, the Cartesian components of the spin radiation torque vector are evaluated. Numerical calculations illustrate the analysis with particular emphasis on the beam parameters, polarization of the magnetic vector potential forming the beam, and aspect ratio of the spheroid. The results demonstrate that the lossless dielectric subwavelength spheroid becomes irresponsive to the transfer of angular momentum, where the longitudinal orbital and spin radiation torque components vanish along singularity lines. Moreover, depending on the beam parameters and the spheroid location in space, the longitudinal orbital and spin torque components reverse sign, indicating a direction of rotation around the central axis of the beam and center of mass of the spheroid, respectively, in either the counterclockwise or clockwise directions. The results are important in particle dynamics and trapping applications, optical tweezers and spanners, and other related fields. (C) 2017 Optical Society of America
机译:基于电偶极近似,执行由Zeroth贝塞尔光束在空间中具有任意取向的无损介电亚主波长球体上的零级贝塞尔光束引起的光学轨道和自旋辐射扭矩的数值计算。首先确定横向光学力分量,然后用于计算纵向轨道扭矩分量。此外,评估自旋辐射扭矩矢量的笛卡尔部件。数值计算说明了特别强调光束参数的分析,形成光束的磁矢量电位的偏振,以及球形的纵横比。结果表明,无损介电亚波长球体因角动量的转移而不负责任,其中纵向轨道和自旋辐射扭矩分量沿奇异线消失。此外,根据光束参数和空间中的球形位置,纵向轨道和自旋扭矩分量的反向符号,表示围绕光束的中心轴线的旋转方向,分别在逆时针方旋转或顺时针方向。结果在粒子动力学和捕获应用,光学镊子和跨跨度和其他相关领域中是重要的。 (c)2017年光学学会

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