Lin Zhifang, Chui S T
Surface Physics Laboratory, Research Center of Theoretical Physics, Department of Physics, Fudan University, Shanghai 200433, China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 May;69(5 Pt 2):056614. doi: 10.1103/PhysRevE.69.056614. Epub 2004 May 28.
The Mie theory for electromagnetic scattering by spherical particle is extended to the case of magnetic particle with gyromagnetic type of permeability. Specifically, we first construct for the magnetic induction B(I) inside the particle a new set of vector basis functions, which are the solution of the wave equation for B(I) and expanded in terms of the usual vector spherical wave functions (VSWF's) with different values of wave vector k(l). The relationship between k(l) and the frequency is obtained as the eigenvalues of an eigensystem determined by the permeability tensor. The incident and scattered fields are expanded as usual in terms of the VSWF's. By matching the boundary conditions, a linear set of coupled equations for the expansion coefficients are obtained and then solved for the solution to the scattering problem. Preliminary numerical results are presented for the case in which the scattering is due solely to the optical anisotropy within the particle. The scattering efficiency is found to exhibit miscellaneous dependence on the incident angle, the polarization, the degree of anisotropy, as well as the size parameter. In addition, the possibility of the photonic Hall effect for one Mie scatterer is confirmed.
用于球形粒子电磁散射的米氏理论被扩展到具有旋磁型磁导率的磁性粒子的情况。具体而言,我们首先为粒子内部的磁感应强度B(I)构建一组新的矢量基函数,它们是B(I)波动方程的解,并根据具有不同波矢k(l)值的通常矢量球波函数(VSWF)展开。k(l)与频率之间的关系作为由磁导率张量确定的本征系统的本征值得到。入射场和散射场像往常一样根据VSWF展开。通过匹配边界条件,得到了一组关于展开系数的线性耦合方程,然后求解该散射问题的解。给出了仅由粒子内部光学各向异性引起散射情况的初步数值结果。发现散射效率对入射角、偏振、各向异性程度以及尺寸参数呈现出复杂的依赖性。此外,证实了单个米氏散射体存在光子霍尔效应的可能性。