首页> 外文会议>Conference on Electro-Optical System Design, Simulation, Testing, and Training, Jul 9-10, 2002, Seattle, Washington, USA >Single Effective Index Method and Scalar Beam-Propagation Method Analysis of Bending Loss for TE and TM Polarized Optical Fields
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Single Effective Index Method and Scalar Beam-Propagation Method Analysis of Bending Loss for TE and TM Polarized Optical Fields

机译:TE和TM偏振光场弯曲损耗的单有效折射率法和标量光束传播法分析

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摘要

We have applied the single effective index method to reduce the two-dimensional refractive index profile into the one-dimensional refractive index structure and modified the wave equations to obtain the paraxial wave equations. Then, TE and TM polarized fields in the curved single-mode planar waveguides are analyzed by using the scalar beam-propagation method employing the finite-difference method with a slab structure. The bending loss in bent waveguides is analyzed for optical fields obtained from the beam-propagation method and comparisons are made between the loss for the waveguides with various radius of curvature and the refractive index difference. The outward shift of the optical field, which is generated at the connection between a straight and a bent waveguide, is obtained from the results of calculation of location of the maximum optical intensity. The transition loss can be reduced by introducing an optimized inward offset at a straight-to-bend junction.
机译:我们已经应用了单一有效折射率法将二维折射率分布简化为一维折射率结构,并修改了波动方程以获得近轴波动方程。然后,通过采用具有平板结构的有限差分方法的标量光束传播方法,分析弯曲的单模平面波导中的TE和TM偏振场。针对通过光束传播方法获得的光场,对弯曲波导中的弯曲损耗进行了分析,并对具有不同曲率半径的波导的损耗与折射率差进行了比较。从最大光强度的位置的计算结果中获得在直的波导和弯曲的波导之间的连接处产生的光场的向外偏移。通过在直线到弯曲的交汇处引入优化的向内偏移,可以减少过渡损耗。

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