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Theory and numerical design of coupled-resonator optical waveguide sections with bends

机译:弯曲耦合谐振器光波导段的理论与数值设计

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We present a theoretical analysis and numerical design of bent and branched sections of coupled resonator optical waveguides (CROWs) composed of side-coupled whispering-gallery (WG) mode microdisk resonators. Our analysis is based on a rigorous Muller boundary integral equations method that enables accurate treatment of CROWs consisting of both identical and different microdisks as well as studying CROW finite-size effects. Differences in WG modes coupling in the vicinity of bends in CROWs composed of optically-large and wavelength-scale microcavities are revealed and discussed. We propose possible ways of pre- and post-fabrication tuning of bent CROW sections. At the pre-fabrication design stage, adjusting the radius of the microdisk positioned at the CROW bend may yield significant reduction of bend losses for any chosen CROW bend angle. Post-fabrication tuning capability of the designed structures is also discussed.
机译:我们提出了耦合谐振器光波导(CROWs)的弯曲和分支部分的理论分析和数值设计,该耦合器由侧向耦合的耳语画廊(WG)模式微盘谐振器组成。我们的分析基于严格的Muller边界积分方程法,该方法能够对包含相同和不同微磁盘的CROW进行精确处理,并研究CROW有限尺寸效应。揭示并讨论了由光学大和波长尺度的微腔组成的CROW弯曲附近耦合的WG模式的差异。我们提出了弯曲的CROW截面的预制和后加工调整的可能方法。在预制设计阶段,对于任何选定的CROW弯曲角度,调整位于CROW弯曲处的微型磁盘的半径都可以显着降低弯曲损耗。还讨论了设计结构的制造后调整能力。

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