首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Diffraction theory in TM polarization: application of the fast Fourier factorization method to cylindrical devices with arbitrary cross section
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Diffraction theory in TM polarization: application of the fast Fourier factorization method to cylindrical devices with arbitrary cross section

机译:TM偏振中的衍射理论:快速傅里叶因式分解方法在任意截面圆柱器件中的应用

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摘要

The diffraction of an electromagnetic wave by a cylindrical object with arbitrary cross section is studied by taking advantage of recent progress in grating theories. The fast Fourier factorization method previously developed in Cartesian coordinates is extended to cylindrical coordinates thanks to the periodicity of both the diffracting object and the incident wave with respect to the polar angle θ. Thus Maxwell equations in a truncated Fourier space are derived and separated in TE and TM polarization cases. The new set of equations for TM polarization is resolved numerically with the S-matrix propagation algorithm. Examples of elliptic cross sections and cross sections including couples of nonconcentric circles show fast convergence of the results, for both dielectric and metallic materials, as well as good agreement with previous published results. Thus the method is suitable for an extension to conical (out-of-plane) diffraction, which will allow studying mode propagation along microstructured fibers.
机译:利用光栅理论的最新进展,研究了具有任意横截面的圆柱形物体对电磁波的衍射。先前在笛卡尔坐标中开发的快速傅里叶分解方法由于衍射对象和入射波相对于极角θ的周期性而扩展到了圆柱坐标。因此,在TE和TM极化情况下,可以得出并截断傅里叶空间中的麦克斯韦方程。使用S矩阵传播算法以数字方式解析了新的TM极化方程组。椭圆形横截面和包含非同心圆对的横截面的示例显示了电介质和金属材料的结果快速收敛,并且与以前发表的结果很好地吻合。因此,该方法适合于锥形(平面外)衍射的扩展,这将允许研究沿微结构纤维的模式传播。

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