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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Calculation of photonic band structures of periodic multilayer grating systems by use of a curvilinear coordinate transformation
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Calculation of photonic band structures of periodic multilayer grating systems by use of a curvilinear coordinate transformation

机译:利用曲线坐标变换计算周期性多层光栅系统的光子能带结构

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摘要

We present a theoretical study of photonic band structures of multilayer grating systems, in which the periodicity in one plane is provided by a grating and the periodicity perpendicular to the plane is obtained by multilayering repeat units. Our method is based on the Chandezon transformation technique together with a scattering matrix approach. It is numerically stable and computationally efficient. Calculations have been performed for several multilayer systems involving a monograting generating a solid with two-dimensional periodicity. Results are presented that show the effect of the amplitudes and the relative phase of the gratings on the subsequent optical band structure. It is found that when all interfaces have the same profile, there are no appreciable bandgaps in the direction of the grating. In contrast, if adjacent interfaces are out of phase, there are large bandgaps in all the directions in the two-dimensional plane containing the grating vector and the layer periodicity vector. # 1998 Optical Society of America [S0740-3232(98)02609-X] OCIS codes: 050.1950, 260.2030, 050.1960, 120.2440, 250.5300.
机译:我们对多层光栅系统的光子能带结构进行了理论研究,其中一个平面中的周期性由光栅提供,垂直于该平面的周期性通过使重复单元多层化而获得。我们的方法基于Chandezon变换技术以及散射矩阵方法。它在数值上稳定且计算效率高。已经对几种多层系统进行了计算,这些多层系统涉及产生具有二维周期性的固体的单光栅。给出的结果显示了光栅的幅度和相对相位对随后的光带结构的影响。可以发现,当所有接口具有相同的轮廓时,在光栅方向上没有明显的带隙。相反,如果相邻的界面异相,则在包含光栅矢量和层周期性矢量的二维平面中的所有方向上都存在较大的带隙。 #1998美国光学学会[S0740-3232(98)02609-X] OCIS代码:050.1950、260.2030、050.1960、120.2440、250.5300。

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