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Effective index method for the computation of the propagation constant and electromagnetic field distribution in z-uniform dielectric or semiconductor waveguides

机译:Z-均匀电介质或半导体波导计算传播恒定和电磁场分布的有效折射率方法

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The paper presents a numerical implementation of the Effective Index Method (EIM) for the determination of the propagation constants and field distributions in dielectric or semiconductor guiding structures that are uniform on the direction of propagation. The implementation proved to be applicable to a wide range of guiding structures (ridge, buried and diffused guides) and was tested against analytical solutions and against other methods' results proving good accuracy. The advantages and limitations of the EIM are discussed and a common waveguide problem result is presented as an example. From the practical applications of the method, the optical analysis of the ridge geometry and QW positioning of a 3W continuous wave GRIN SCH SQW laser diode in the 670 nm band is briefly discussed and the measured performances of the devices are presented.
机译:本文提出了用于确定在传播方向上均匀的介质或半导体引导结构中的传播常数和场分布的有效索引方法(EIM)的数值实现。事实证明,实施适用于广泛的引导结构(RIDGE,埋地和扩散指南),并针对分析解决方案进行测试,并反对其他方法结果证明了良好的准确性。讨论EIM的优点和局限性,并且呈现普通的波导问题结果作为示例。从该方法的实际应用,简要讨论了在670nm频带中的3W连续波栅格SCH SQW激光二极管的脊几何形状和QW定位的光学分析,并呈现了设备的测量性能。

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