弯曲波导中TE和TM极化场的标量BPM分析

Won Jay Song, B. Ahn
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引用次数: 13

摘要

我们采用有效折射率法将二维折射率剖面化简为一维折射率结构,并对波动方程进行修正,得到傍轴波动方程。采用平板结构的有限差分法,用标量光束传播法分析了弯曲单模平面波导中的TE和TM极化场。分析了用光束传播法获得光场时弯曲波导的弯曲损耗,比较了不同曲率半径和折射率差的弯曲波导的弯曲损耗。在直波导和弯波导之间的连接处产生的光场向外位移,是通过计算最大光强的位置得到的。可以通过在直弯交界处引入优化的向内偏移来减少过渡损失。计算了弯曲波导中TE偏振场和TM偏振场双折射引起的波长偏移。
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Scalar BPM analyses of TE and TM polarized fields in bent waveguides
We have applied the 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 paraxial wave equations. TE and TM polarized fields in the curved single-mode planar waveguides are analyzed 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 radii of curvature and refractive index differences. The outward shift of the optical field, which is generated at the connection between a straight and bent waveguide, is obtained from calculations of the location of maximum optical intensity. The transition loss can be reduced by introducing an optimized inward offset at a straight-to-bend junction. The wavelength shift due to birefringence of TE and TM polarized fields in bent waveguides is also calculated.
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