Small Alex, Fung Jerome, Manoharan Vinothan N
J Opt Soc Am A Opt Image Sci Vis. 2013 Dec 1;30(12):2519-25. doi: 10.1364/JOSAA.30.002519.
The optical theorem provides a powerful tool for calculating the extinction cross section of a particle from a solution to Maxwell's equations, relating the cross section to the scattering amplitude in the forward direction. The theorem has been generalized by a number of other workers to consider a particle near an interface between media with different refractive indices. Here we present a derivation of the generalized optical theorem that is valid for a particle embedded in the interface, as well as an incident beam undergoing total internal reflection. We also obtain an additional useful physical result: we show that the far-field scattered field must be zero in the direction parallel to the interface. Our results enable the verification of computations of scattering by particles embedded in interfaces and may be relevant to experiments on colloidal particles at fluid interfaces.
光学定理为从麦克斯韦方程组的解计算粒子的消光截面提供了一个有力工具,它将该截面与正向散射振幅联系起来。许多其他研究者对该定理进行了推广,以考虑处于具有不同折射率的介质界面附近的粒子。在此,我们给出广义光学定理的推导,该推导对于嵌入界面中的粒子以及经历全内反射的入射光束均有效。我们还得到了一个额外有用的物理结果:我们表明在平行于界面的方向上远场散射场必定为零。我们的结果能够验证嵌入界面中的粒子的散射计算,并且可能与流体界面处胶体粒子的实验相关。