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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Light propagation through two-dimensional photonic crystal slab waveguide bends solved by three-dimensional plane-wave transfer-matrix method
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Light propagation through two-dimensional photonic crystal slab waveguide bends solved by three-dimensional plane-wave transfer-matrix method

机译:二维平面波传输矩阵法求解通过二维光子晶体平板波导弯曲的光传播

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摘要

We propose a technique, based on three-dimensional (3D) plane-wave transfer-matrix method, to analyze light propagation through two-dimensional (2D) photonic crystal (PC) slab waveguide bend structures. By means of the supercell technique, the waveguide bend is modeled by two semi-infinite 3D periodic arrays of 2D PC slab waveguides face to face or separated by a sandwiched slab of bend region from which the intrinsic transmission. reflection, and radiation loss coefficients of waveguide modes can be calculated. The proposed approach is efficient. accurate. and numerically friendly for understanding and designing waveguide bends in different 2D PC slab and 3D PC structures with complex geometries. The 3D method can also help to evaluate the accuracy of the simplified 2D model under an effective refractive index approximation, which has been extensively adopted in simulations and designs of 2D PC slab structures.
机译:我们提出一种技术,基于三维(3D)平面波传输矩阵方法,来分析通过二维(2D)光子晶体(PC)平板波导弯曲结构的光传播。借助超级单元技术,通过两个2D PC平板波导的半无限3D周期性阵列对波导弯曲进行建模,并通过内在的弯曲区域将其夹在中间,将其夹在中间。可以计算出波导模式的反射和辐射损耗系数。所提出的方法是有效的。准确。对理解和设计具有复杂几何形状的不同2D PC平板和3D PC结构中的波导弯头,数值上友好。 3D方法还可在有效折射率近似下帮助评估简化的2D模型的准确性,该方法已广泛用于2D PC平板结构的仿真和设计中。

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