论文标题

在杂化腔 - 腔纳米纳米二极管双量子点二极管中有效且连续的微波光电检测

Efficient and Continuous Microwave Photodetection in Hybrid Cavity-Semiconductor Nanowire Double Quantum Dot Diodes

论文作者

Khan, Waqar, Potts, Patrick P., Lehmann, Sebastian, Thelander, Claes, Dick, Kimberly A., Samuelsson, Peter, Maisi, Ville F.

论文摘要

单光子检测器是时间相关光子计数应用的关键[1],并启用了许多新兴的光学量子信息技术[2]。到目前为止,光学结构域中连续有效的单光子检测的主要方法是基于半导体光二极管[3]。但是,在微波状态下缺乏有效且连续的单光子探测器,因为光子能量是其中的四到五个数量级,并且常规的光二极管没有这种灵敏度。在这里,我们解决了这一差距,并证明了如何在高质量的,半导体的纳米式双量子点中有效且连续地转换为电流,该光子如何与腔耦合。特别是,在我们的检测方案中,吸收的光子通过双点引起单个电子隧道事件,转化效率达到6%。我们的结果铺平了在理论上预测的单位效率下使用单发微波光子检测的光电二极管的道路[4]。

Single photon detectors are key for time-correlated photon counting applications [1] and enable a host of emerging optical quantum information technologies [2]. So far, the leading approach for continuous and efficient single-photon detection in the optical domain has been based on semiconductor photodiodes [3]. However, there is a paucity of efficient and continuous single-photon detectors in the microwave regime, because photon energies are four to five orders of magnitude lower therein and conventional photodiodes do not have that sensitivity. Here we tackle this gap and demonstrate how itinerant microwave photons can be efficiently and continuously converted to electrical current in a high-quality, semiconducting nanowire double quantum dot that is resonantly coupled to a cavity. In particular, in our detection scheme, an absorbed photon gives rise to a single electron tunneling event through the double dot, with a conversion efficiency reaching 6 %. Our results pave the way for photodiodes with single-shot microwave photon detection, at the theoretically predicted unit efficiency [4].

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