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基于Yee网格的有限差分本征模求解器,用于光波导和光子晶体光纤,并采用了完全匹配层吸收边界条件。

Yee-mesh-based finite difference eigenmode solver with PML absorbing boundary conditions for optical waveguides and photonic crystal fibers.

作者信息

Yu Chin-Ping, Chang Hung-Chun

出版信息

Opt Express. 2004 Dec 13;12(25):6165-77. doi: 10.1364/opex.12.006165.

Abstract

Eigenvalue equations for solving full-vector modes of optical waveguides are formulated using Yee-mesh-based finite difference algorithms and incorporated with perfectly matched layer absorbing boundary conditions. The established method is thus able to calculate the complex propagation constants and the confinement losses of leaky waveguide modes. Proper matching of dielectric interface conditions through the Taylor series expansion of the fields is adopted in the formulation to achieve high numerical accuracy. The method is applied to the study of the holey fiber with triangular lattice, the two-core holey fiber, and the air-guiding photonic crystal fiber.

摘要

利用基于Yee网格的有限差分算法建立了用于求解光波导全矢量模式的本征值方程,并结合了完美匹配层吸收边界条件。该方法能够计算泄漏波导模式的复传播常数和限制损耗。在公式推导中,通过场的泰勒级数展开对介质界面条件进行了适当匹配,以实现较高的数值精度。该方法应用于三角晶格空芯光纤、双芯空芯光纤和空气引导光子晶体光纤的研究。

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