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Tunable Whispering Gallery Mode Photonic Device Based on Microstructured Optical Fiber with Internal Electrodes

机译:基于微结构化光纤的可调谐耳语画廊模式光子器件用内部电极

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We propose and experimentally demonstrate the first tunable whispering gallery mode (WGM) photonic device based on side-hole microstructured optical fiber (SH-MOF) with internal electrodes, in which the WGM quality factors do not decrease significantly during the tuning process. The resonant modes are redshifted simply by increasing the temperature. A description of the thermal tuning properties of the WGMs in SH-MOF with internal electrodes is performed by using a two-stage computational methodology, where the effects of metal filling process are considered. SH-MOF devices with internal electrodes are tested and the experimental results show excellent agreement with the theory. A linear relationship between the shift rate of the WGM modes and temperature is observed. The tunable SH-MOF microresonator with internal electrodes is anticipated to find potential applications in optical filtering, optical switching, and highly integrated tunable photonic devices.
机译:我们提出并通过实验证明了基于侧孔微结构化光纤(SH-MOF)的第一可调谐耳语画廊模式(WGM)光子器件,其中包括内部电极,在调谐过程中,WGM质量因子不会显着降低。通过增加温度,谐振模式仅仅通过增加温度。通过使用两级计算方法执行具有内部电极的SH-MOF中WGM的热调谐性质的描述,其中考虑了金属填充过程的效果。测试具有内部电极的SH-MOF器件,实验结果表现出与该理论的良好协议。观察到WGM模式和温度的换档率之间的线性关系。预计具有内部电极的可调谐SH-MOF微谐振器以找到光学滤波,光学开关和高度集成的可调光子器件中的潜在应用。

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