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Semi-guided plane wave reflection by thin-film transitions for angled incidence

机译:薄膜跃迁对角入射入射的半导平面波反射

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摘要

The non-normal incidence of semi-guided plane waves on step-like or tapered transitions between thin film regions with different thicknesses, an early problem of integrated optics, is being reconsidered. As a step beyond the common effective index picture, we compare two approaches on how this problem can be tackled-at least approximately-by nowadays readily available simulation tools for integrated optics design. Accepting the scalar approximation, using an ansatz of harmonic field dependence on the position along the interface, the 3-D problem reduces to a 2-D Helmholtz problem, for guided wave input and transparent-influx boundary conditions, with an effective permittivity that depends on the incidence angle. Alternatively, one complements the structure with a second mirrored interface, such that the 2-D cross section of a wide multimode rib waveguide emerges. Constraints for transverse resonance then permit to translate the propagation constants of its polarized modes into discrete samples of the phase changes experienced by an in-plane guided wave upon total internal reflection at the sidewalls.
机译:人们正在考虑半导平面波在具有不同厚度的薄膜区域之间的阶梯状或锥形过渡上的非法线入射,这是集成光学的早期问题。作为超越通用有效折射率图的一个步骤,我们比较了如何解决该问题的两种方法-至少到现在为止-目前已经可以使用的集成光学设计的仿真工具。接受标量近似值,使用谐波场依赖于沿界面位置的ansatz,对于导波输入和透明流入边界条件,3-D问题简化为2-D Helmholtz问题,有效介电常数取决于在入射角上。另一种选择是,用第二个镜面界面对结构进行补充,从而出现宽多模肋形波导的二维横截面。然后,用于横向共振的约束条件允许将其偏振模的传播常数转换为面内导波在侧壁处的全内反射时经历的相变的离散样本。

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