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Optically-controlled extinction ratio and Q-factor tunable silicon microring resonators based on optical forces

机译:基于光力的光控消光比和Q因子可调硅微环谐振器

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摘要

Tunability is a desirable property of microring resonators to facilitate superior performance. Using light to control light, we present an alternative simple approach to tuning the extinction ratio (ER) and Q-factor of silicon microring resonators based on optical forces. We design an opto-mechanical tunable silicon microring resonator consisting of an add-drop microring resonator and a control-light-carrying waveguide (“controlling” waveguide). One of the two bus waveguides of the microring resonator is a deformable nanostring put in parallel with the “controlling” waveguide. The tuning mechanism relies on the optical force induced deflection of suspended nanostring, leading to the change of coupling coefficient of microring and resultant tuning of ER and Q-factor. Two possible geometries, i.e. double-clamped nanostring and cantilever nanostring, are studied in detail for comparison. The obtained results imply a favorable structure with the microring positioned at the end of the cantilever nanostring. It features a wide tuning range of ER from 5.6 to 39.9 dB and Q-factor from 309 to 639 as changing the control power from 0 to 1.4 mW.
机译:可调性是微环谐振器的理想特性,以促进优异的性能。使用光来控制光,我们提出了一种基于光力来调整硅微环谐振器的消光比(ER)和Q因子的简单方法。我们设计了一个光机械可调硅微环谐振器,该谐振器由一个分插式微环谐振器和一个控制载光波导(“控制”波导)组成。微环谐振器的两个总线波导之一是与“控制”波导平行放置的可变形纳米串。调节机制依赖于光学力引起的悬浮纳米线的偏转,从而导致微环耦合系数的变化以及对ER和Q因子的调节。为了比较,详细研究了两种可能的几何形状,即双夹持纳米线和悬臂纳米线。获得的结果暗示了微环位于悬臂纳米带末端的良好结构。它的ER调整范围从5.6到39.9 dB,Q因子从309到639,将控制功率从0更改为1.4 mW。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Yun Long; Jian Wang;

  • 作者单位
  • 年(卷),期 -1(4),-1
  • 年度 -1
  • 页码 5409
  • 总页数 7
  • 原文格式 PDF
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