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Quantum dot single-photon switches of resonant tunneling current for discriminating-photon-number detection

机译:共振隧穿电流的量子点单光子开关用于区分光子数检测

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摘要

Low-noise single-photon detectors that can resolve photon numbers are used to monitor the operation of quantum gates in linear-optical quantum computation. Exactly 0, 1 or 2 photons registered in a detector should be distinguished especially in long-distance quantum communication and quantum computation. Here we demonstrate a photon-number-resolving detector based on quantum dot coupled resonant tunneling diodes (QD-cRTD). Individual quantum-dots (QDs) coupled closely with adjacent quantum well (QW) of resonant tunneling diode operate as photon-gated switches- which turn on (off) the RTD tunneling current when they trap photon-generated holes (recombine with injected electrons). Proposed electron-injecting operation fills electrons into coupled QDs which turn “photon-switches” to “OFF” state and make the detector ready for multiple-photons detection. With proper decision regions defined, 1-photon and 2-photon states are resolved in 4.2 K with excellent propabilities of accuracy of 90% and 98% respectively. Further, by identifying step-like photon responses, the photon-number-resolving capability is sustained to 77 K, making the detector a promising candidate for advanced quantum information applications where photon-number-states should be accurately distinguished.
机译:可以解析光子数的低噪声单光子检测器用于监视线性光学量子计算中的量子门操作。应当特别区分在检测器中记录的0、1或2个光子,特别是在长距离量子通信和量子计算中。在这里,我们演示了一种基于量子点耦合谐振隧穿二极管(QD-cRTD)的光子数分辨检测器。与谐振隧穿二极管的相邻量子阱(QW)紧密耦合的各个量子点(QD)用作光子门控开关-当它们捕获光子产生的空穴(与注入的电子复合)时,可以打开(关闭)RTD隧穿电流。 。拟议的电子注入操作将电子填充到耦合的量子点中,量子点将“光子开关”转换为“关”状态,并使检测器为多光子检测做好准备。定义了正确的决策区域后,在4.2 K中解析出1光子和2光子状态,精确度分别为90%和98%。此外,通过识别阶梯状的光子响应,光子数解析能力可维持在77 K,从而使该检测器成为高级量子信息应用的有希望的候选者,应准确区分光子数态。

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