Lee Chang-Min, Buyukkaya Mustafa Atabey, Harper Samuel, Aghaeimeibodi Shahriar, Richardson Christopher J K, Waks Edo
Department of Electrical and Computer Engineering and Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, Maryland 20742, United States.
Laboratory for Physical Sciences, University of Maryland, College Park, Maryland 20740, United States.
Nano Lett. 2021 Jan 13;21(1):323-329. doi: 10.1021/acs.nanolett.0c03680. Epub 2020 Dec 18.
Telecom-wavelength single photons are essential components for long-distance quantum networks. However, bright and pure single photon sources at telecom wavelengths remain challenging to achieve. Here, we demonstrate a bright telecom-wavelength single photon source based on a tapered nanobeam containing InAs/InP quantum dots. The tapered nanobeam enables directional and Gaussian-like far-field emission of the quantum dots. As a result, using above-band excitation we obtain an end-to-end brightness of 4.1 ± 0.1% and first-lens brightness of 27.0 ± 0.1% at the ∼1300 nm wavelength. Furthermore, we adopt quasi-resonant excitation to reduce both multiphoton emission and decoherence from unwanted charge carriers. As a result, we achieve a coherence time of 523 ± 16 ps and postselected Hong-Ou-Mandel visibility of 0.91 ± 0.09 along with a comparable first-lens brightness of 21.0 ± 0.1%. These results represent a major step toward a practical fiber-based single photon source at telecom wavelengths for long-distance quantum networks.
电信波长的单光子是长距离量子网络的关键组件。然而,实现明亮且纯净的电信波长单光子源仍然具有挑战性。在此,我们展示了一种基于包含 InAs/InP 量子点的锥形纳米光束的明亮电信波长单光子源。该锥形纳米光束能够实现量子点的定向且类似高斯分布的远场发射。因此,利用带外激发,我们在约 1300 nm 波长处获得了 4.1±0.1% 的端到端亮度和 27.0±0.1% 的首透镜亮度。此外,我们采用准共振激发来减少多光子发射以及来自不需要的电荷载流子的退相干。结果,我们实现了 523±16 ps 的相干时间以及 0.91±0.09 的后选择 Hong-Ou-Mandel 可见度,同时首透镜亮度与之相当,为 21.0±0.1%。这些结果代表了朝着用于长距离量子网络的实用电信波长光纤基单光子源迈出的重要一步。