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Efficient single photon source based on μ-fibre-coupled tunable microcavity

机译:基于μ光纤耦合可调微腔的高效单光子源

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Efficient and fast on-demand single photon sources have been sought after as critical components of quantum information science. We report an efficient and tunable single photon source based on an InAs quantum dot (QD) embedded in a photonic crystal cavity coupled with a highly curved μ-fibre. Exploiting evanescent coupling between the μ-fibre and the cavity, a high collection efficiency of 23% and Purcell-enhanced spontaneous emissions are observed. In our scheme, the spectral position of a resonance can be tuned by as much as 1.5?nm by adjusting the contact position of the μ-fibre, which increases the spectral coupling probability between the QD and the cavity mode. Taking advantage of the high photon count rate and the tunability, the collection efficiencies and the decay rates are systematically investigated as a function of the QD–cavity detuning.
机译:人们一直在寻求高效,快速的按需单光子源,作为量子信息科学的重要组成部分。我们报告了一种基于InAs量子点(QD)的高效且可调谐的单光子源,该InA量子点(QD)嵌入与高度弯曲的μ光纤耦合的光子晶体腔中。利用μ纤维和空腔之间的van逝耦合,可以观察到23%的高收集效率和Purcell增强的自发辐射。在我们的方案中,通过调整μ纤维的接触位置,可以将共振的光谱位置调整多达1.5?nm,这增加了QD和腔模之间的光谱耦合概率。利用高光子计数率和可调性,系统地研究了收集效率和衰减率与QD-腔失谐的关系。

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