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光子集成电路中选定探测器和发射器的可控集成。

Controlled integration of selected detectors and emitters in photonic integrated circuits.

作者信息

Gourgues Ronan, Zadeh Iman Esmaeil, Elshaari Ali W, Bulgarini Gabriele, Los Johannes W N, Zichi Julien, Dalacu Dan, Poole Philip J, Dorenbos Sander N, Zwiller Val

出版信息

Opt Express. 2019 Feb 4;27(3):3710-3716. doi: 10.1364/OE.27.003710.

Abstract

Integration of superconducting nanowire single-photon detectors and quantum sources with photonic waveguides is crucial for realizing advanced quantum integrated circuits. However, scalability is hindered by stringent requirements on high-performance detectors. Here we overcome the yield limitation by controlled coupling of photonic channels to pre-selected detectors based on measuring critical current, timing resolution, and detection efficiency. As a proof of concept of our approach, we demonstrate a hybrid on-chip full-transceiver consisting of a deterministically integrated detector coupled to a selected nanowire quantum dot through a filtering circuit made of a silicon nitride waveguide and a ring resonator filter, delivering 100 dB suppression of the excitation laser. In addition, we perform extensive testing of the detectors before and after integration in the photonic circuit and show that the high performance of the superconducting nanowire detectors, including timing jitter down to 23 ± 3 ps, is maintained. Our approach is fully compatible with wafer-level automated testing in a cleanroom environment.

摘要

将超导纳米线单光子探测器和量子源与光子波导集成对于实现先进的量子集成电路至关重要。然而,高性能探测器的严格要求阻碍了其可扩展性。在此,我们基于对临界电流、定时分辨率和探测效率的测量,通过将光子通道与预选探测器进行可控耦合,克服了产量限制。作为我们方法的概念验证,我们展示了一种混合片上全收发器,它由一个通过由氮化硅波导和环形谐振器滤波器构成的滤波电路确定性集成到选定纳米线量子点的探测器组成,实现了对激发激光100 dB的抑制。此外,我们在光子电路集成前后对探测器进行了广泛测试,并表明超导纳米线探测器的高性能得以保持,包括定时抖动低至23±3 ps。我们的方法与洁净室环境中的晶圆级自动化测试完全兼容。

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