Moreira Wendel Lopes, Neves Antonio Alvaro Ranha, Garbos Martin K, Euser Tijmen G, Cesar Carlos Lenz
Opt Express. 2016 Feb 8;24(3):2370-82. doi: 10.1364/OE.24.002370.
Since 1908, when Mie reported analytical expressions for the fields scattered by a spherical particle upon incidence of plane-waves, generalizing his analysis for the case of an arbitrary incident wave has been an open question because of the cancellation of the prefactor radial spherical Bessel function. This cancellation was obtained before by our own group for a highly focused beam centered in the objective. In this work, however, we show for the first time how these terms can be canceled out for any arbitrary incident field that satisfies Maxwells equations, and obtain analytical expressions for the beam shape coefficients. We show several examples on how to use our method to obtain analytical beam shape coefficients for: Bessel beams, general hollow waveguide modes and specific geometries such as cylindrical and rectangular. Our method uses the vector potential, which shows the interesting characteristic of being gauge invariant. These results are highly relevant for speeding up numerical calculation of light scattering applications such as the radiation forces acting on spherical particles placed in an arbitrary electromagnetic field, as in an optical tweezers system.
自1908年米氏报告了平面波入射时球形粒子散射场的解析表达式以来,由于径向球贝塞尔函数前置因子的抵消,将他的分析推广到任意入射波的情况一直是一个悬而未决的问题。此前我们自己的团队在物镜中心高度聚焦的光束情况下也得到了这种抵消。然而,在这项工作中,我们首次展示了如何针对任何满足麦克斯韦方程组的任意入射场消除这些项,并获得光束形状系数的解析表达式。我们展示了几个示例,说明如何使用我们的方法来获得以下情况的解析光束形状系数:贝塞尔光束、一般空心波导模式以及特定几何形状(如圆柱形和矩形)。我们的方法使用矢量势,它具有规范不变的有趣特性。这些结果对于加速光散射应用的数值计算高度相关,例如在光学镊子系统中作用于置于任意电磁场中的球形粒子的辐射力。