论文标题

插头播音单源源中量子点的芯片确定性操作

On-chip deterministic operation of quantum dots in dual-mode waveguides for a plug-and-play single-photon source

论文作者

Uppu, Ravitej, Eriksen, Hans T., Thyrrestrup, Henri, Uğurlu, Aslı D., Wang, Ying, Scholz, Sven, Wieck, Andreas D., Ludwig, Arne, Löbl, Matthias C., Warburton, Richard J., Lodahl, Peter, Midolo, Leonardo

论文摘要

相干单光子的确定性来源是用于量子模拟器的量子信息处理的启示设备,最终是成熟的量子互联网。纳米光子结构中的量子点(QD)已被用作单个光子的出色来源,而平面波导非常适合扩展到多个光子,并且探索近乎统一光子发射器耦合和先进的主动芯片功能的发射器。理想的单光子源需要抑制噪声和破坏性,这在电气接触的异质结构中尤其证明。实施生成相干单光子所需的QD的确定性共振激发仍然是一个挑战,因为应抑制来自激发激光器的残留光,而不会损害源效率和可扩展性。在这里,我们介绍了一种新型的平面纳米光子设备的设计和实现,该设备可以通过波导对QD进行确定性的脉冲共振激发。通过纳米结构工程,激发灯和收集的光子以两种正交波导模式引导,实现确定性操作。我们演示了一个连贯的单光子源,同时实现了高纯度($ g^{(2)}(0)$ = 0.020 $ \ pm $ 0.005),高分辨率($ v $ = $ = 96 $ \ pm $ 2%),$> $> $> $> $> $ 80%的耦合效率。新颖的“插件”相干单光子源可以无人操作几天,并且会发现即时应用,例如用于构建示意光子量子计算或传感的预言的多光子纠缠源。

A deterministic source of coherent single photons is an enabling device of quantum-information processing for quantum simulators, and ultimately a full-fledged quantum internet. Quantum dots (QDs) in nanophotonic structures have been employed as excellent sources of single photons, and planar waveguides are well suited for scaling up to multiple photons and emitters exploring near-unity photon-emitter coupling and advanced active on-chip functionalities. An ideal single-photon source requires suppressing noise and decoherence, which notably has been demonstrated in electrically-contacted heterostructures. It remains a challenge to implement deterministic resonant excitation of the QD required for generating coherent single photons, since residual light from the excitation laser should be suppressed without compromising source efficiency and scalability. Here, we present the design and realization of a novel planar nanophotonic device that enables deterministic pulsed resonant excitation of QDs through the waveguide. Through nanostructure engineering, the excitation light and collected photons are guided in two orthogonal waveguide modes enabling deterministic operation. We demonstrate a coherent single-photon source that simultaneously achieves high-purity ($g^{(2)}(0)$ = 0.020 $\pm$ 0.005), high-indistinguishability ($V$ = 96 $\pm$ 2 %), and $>$80 % coupling efficiency into the waveguide. The novel `plug-and-play' coherent single-photon source could be operated unmanned for several days and will find immediate applications, e.g., for constructing heralded multi-photon entanglement sources for photonic quantum computing or sensing.

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