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Review of finite-element characterization of photonic devices

机译:光子器件的有限元表征研究进展

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We report the development and applications of finite-elementbased numerical approaches for the characterization of a wide range of photonic devices. The full-vectorial finite-element method is considered for the modal solutions of uniform guided-wave sections and the least-squares boundary residual method is used to calculate the scattering coefficients for butt-coupled uniform waveguide sections. Several guided-wave components are discussed and their operating characteristics are illustrated. Particular emphasis is given to key photonic components such as the spot-size converters, Bragg gratings, polarization splitters, polarization rotators, multimode interference-based devices and modulators. Valuable results relating to the design and characterization of these important photonic components are presented.
机译:我们报告了有限元数值方法的发展和应用,用于表征各种光子器件。对均匀导波截面的模态解考虑了全矢量有限元法,对接耦合均匀波导截面的散射系数采用最小二乘边界残差法。讨论了几种导波组件,并说明了它们的工作特性。特别强调关键的光子组件,例如光斑大小转换器,布拉格光栅,偏振分光镜,偏振旋转器,基于多模干涉的设备和调制器。提出了与这些重要光子组件的设计和表征有关的宝贵结果。

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