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Strong coupling between single atoms and non-transversal photons

机译:单原子和非横向光子之间的强耦合

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摘要

We investigate the interaction between single quantum emitters and non-transversally polarized photons for which the electric field vector amplitude has a significant component in the direction of propagation. Even though this situation seems to be at odds with the description of light as a transverse wave, it regularly occurs when interfacing or manipulating emitters with non-paraxial, guided, or evanescent light. Here, we quantitatively investigate this phenomenon for the case of single atoms that strongly interact with whispering-gallery-mode (WGM) microresonators. These resonators confine light by continuous total internal reflection and offer the advantage of very long photon lifetimes in conjunction with near-lossless in- and out-coupling of light via tapered fiber couplers. In our setup, we employ a a novel type of high-Q WGM microresonator - a so-called bottle microresonator [1], see Fig. 1 - which has the additional advantage of being fully tunable and provides a mode geometry that enables near-lossless simultaneous coupling of two independent tapered fiber couplers [2].
机译:我们研究了单个量子发射体与非横向极化光子之间的相互作用,其中电场矢量幅度在传播方向上具有重要的分量。即使这种情况似乎与将光描述为横向波相矛盾,但在将发射器与非傍轴,引导或e逝光进行接口或操纵时,通常还是会发生这种情况。在这里,我们定量地研究与耳语画廊模式(WGM)微谐振器强烈相互作用的单个原子的情况。这些谐振器通过连续的全内反射来限制光,并具有非常长的光子寿命以及通过锥形光纤耦合器实现近乎无损的光输入和输出耦合的优点。在我们的设置中,我们使用一种新型的高Q WGM微谐振器-所谓的瓶型微谐振器[1],见图1-它具有完全可调的附加优势,并提供了一种模式几何结构,可实现近乎无损同时耦合两个独立的锥形光纤耦合器[2]。

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