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Multiplexed Single-Photon Source Based on Multiple Quantum Dots Embedded within a Single Nanowire

机译:基于单个纳米线内的多量子点的多路复用单光子源

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Photonics-based quantum information technologies require efficient, high emission rate sources of single photons. Position-controlled quantum dots embedded within a broadband nanowire waveguide provide a fully scalable route to fabricating highly efficient single-photon sources. However, emission rates for single-photon devices are limited by radiative recombination lifetimes. Here, we demonstrate a multiplexed single-photon source based on a multidot nanowire. Using epitaxially grown nanowires, we incorporate multiple energy-tuned dots, each optimally positioned within the nanowire waveguide, providing single photons with high efficiency. This linear scaling of the single-photon emission rate with number of emitters is demonstrated using a five-dot nanowire with an average multiphoton emission probability of <4% when excited at saturation. This represents the first ever demonstration of multiple single-photon emitters deterministically incorporated in a single photonic device and is a major step toward achieving GHz single-photon emission rates from a scalable multi-quantum-dot system.
机译:基于光子的量子信息技术需要有效,高排放率的单光子。嵌入在宽带纳米线波导内的位置控制量子点提供完全可扩展的途径来制造高效的单光子源。然而,单光子器件的排放率受辐射重组寿命的限制。这里,我们展示了基于多液体纳米线的多路复用单光子源。使用外延生长的纳米线,我们掺入多个能量调谐点,每个电型点在纳米线波导内最佳地定位,提供具有高效率的单个光子。使用五点纳米线对具有发射数的单光子发射率的单光子发射率的这种线性缩放,其在饱和时兴奋时具有平均多波选排放概率<4%的含量。这代表了多个单光子发射器的第一个示范确定在单个光子器件中,并且是朝向从可伸缩的多量子点系统实现GHz单光子发射率的主要步骤。

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