硅棒和微细毛细管的窃窃廊模式共振的应用

E. Rivera-Pérez, A. Díez, J. Cruz, A. Rodríguez-Cobos, M. Andrés
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引用次数: 0

摘要

圆柱形微腔,作为固体棒和微毛细管,与微球、微环和微环相比,具有几个特定的特征,使其特别适合某些应用。使光学共振可调谐对于许多应用来说是必不可少的,而圆柱形拓扑可以实现多种调谐技术。除了热调谐和应变调谐外,微锥形棒、掺铒微谐振器和充液微血管也可用于实现不同的调谐技术。利用掺铒微谐振腔和辅助980 nm泵浦二极管,演示了窃窃廊模式(WGM)共振的光学微调。利用略微变细的硅棒,利用高Q WGM共振产生的反射可以制成可调谐的单频光纤激光器。微细毛细管的WGM共振为折射率传感器应用提供了独特的解决方案,使折射率高于二氧化硅的液体得以使用,并在光学微腔和微流体之间提供了最佳的兼容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of whispering gallery modes resonances of silica rods and microcapillaries
Cylindrical microcavities, as solid rods and microcapillaries, have several specific features compared to microspheres, microrings and microtoroids that make them particularly well suited for some applications. Making the optical resonances tunable is essential for many applications, and the cylindrical topology enables the implementation of several tuning techniques. In addition to thermal and strain tuning, slightly tapered rods, Erbium doped microresonators and liquid filled microcapillaries can be used to implement different tuning techniques. Optical fine tuning of whispering gallery modes (WGM) resonances is demonstrated using Erbium doped microresonators and an auxiliary 980 nm pump diode. Using a slightly tapered silica rod, the reflection produced by high Q WGM resonances can be exploited to make a tunable single-frequency fiber laser. WGM resonances of thin microcapillaries provide a unique solution for refractive index sensor applications, enabling the use of liquids with refractive higher than that of silica and offering an optimum compatibility between optical microcavities and microfluidics.
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