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Ultrawide tuning of photonic microcavities via evanescent field perturbation

机译:通过e逝场微扰对光子微腔进行超宽调谐

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摘要

Evanescent field perturbation of an integrated microring resonator is examined as a means of achieving high-fidelity reversible tuning of photonic microcavities over large wavelength ranges. A 1.7percent wavelength tuning is achieved through the use of a novel silica fiber probe that provides access to the evanescent field of an air-clad high-index-contrast ring resonator. As the microring is perturbed, the probe-ring distance is found through simultaneous nanometric distance calibration and force measurements. Experimental results agree well with theoretical tuning. Possible microelectromechanical systems implementation of this effect is discussed, as well as avenues for improvement of the tuning range.
机译:集成微环谐振器的瞬逝场扰动是作为实现大波长范围内光子微腔的高保真度可逆调谐的一种手段而进行研究的。通过使用新型石英纤维探针可实现1.7%的波长调谐,该探针可提供空气包覆的高折射率对比度环形谐振器的渐逝场。当微环受到干扰时,可以通过同时进行的纳米距离校准和测力来找到探针环的距离。实验结果与理论调整吻合良好。讨论了可能的微机电系统实现此效果的方法,以及改进调谐范围的途径。

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