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Fiber coupling of DFB laser to micro spherical cavities-a novel approach for frequency control and linewidth quenching utilizing morphology dependent resonances

机译:DFB激光对微球腔的光纤耦合 - 一种利用形态依赖共振的频率控制和线宽淬火的新方法

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This paper describes a novel scheme for coupling semiconductor lasers to a new type of miniature optical resonator that has a small dissipation, and as a result, very high Q-a microsphere (/spl mu/-sphere). We report, for the first time, to our knowledge, the lateral coupling of light into whispering-gallery-modes of a /spl mu/-sphere using a side-polished single-mode optical fiber. We observed well defined high-Q morphology dependent resonances in the scattered field along with associated dips in the transmission spectrum of the optical fiber. The Q-factor of the combined fiber-sphere system is 5/spl times/10/sup 6/. The intensity and location of the various resonance orders is understood by the localization principle and the recently developed Generalized Lorentz-Mie Theory.
机译:本文介绍了一种用于将半导体激光器耦合到具有小耗散的新型微型光学谐振器的新颖方案,结果非常高的Q-A微球(/ SPL MU / -Sphere)。我们首次报告了我们的知识,使用侧面抛光的单模光纤将光的横向耦合到耳语 - 图库模式的耳语 - 图库模式使用侧面抛光的单模光纤。我们观察到散射场中的良好定义的高Q形态依赖性共振以及光纤的传输光谱中的相关倾斜。组合光纤系统的Q系数是5 / SPL时间/ 10 / SUP 6 /。各种共振订单的强度和位置由本地化原则和最近开发的广义Lorentz-Mie理论理解。

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