Microwave single-photon detection based on dressed-state engineering

K. Inomata, Z. R. Lin, K. Koshino, W. Oliver, J. Tsai, T. Yamamoto, Y. Nakamura
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Abstract

Single photon detection is a requisite technique in quantum-optics experiments in both the optical and the microwave domains. However, the energy of microwave quanta are four to five orders of magnitude less than their optical counterpart, making the efficient detection of single microwave photon extremely challenging. Here, we demonstrate the detection of a single microwave photon propagating through a waveguide. The detector is implemented with an "impedance-matched" artificial Λ system comprising the dressed states of a driven superconducting qubit coupled to a microwave resonator. We attain a single-photon detection efficiency of 0.66±0.06 with a reset time of ~400 ns. This detector can be exploited for various applications in quantum sensing, quantum communication and quantum information processing.
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基于盛装态工程的微波单光子探测
单光子探测是光学和微波领域量子光学实验中必不可少的技术。然而,微波量子的能量比其光学量子的能量低4到5个数量级,这使得对单个微波光子的有效探测极具挑战性。在这里,我们演示了通过波导传播的单个微波光子的检测。该探测器由一个“阻抗匹配”人工Λ系统实现,该系统包括驱动超导量子比特与微波谐振器耦合的修饰态。我们获得了单光子检测效率为0.66±0.06,复位时间为~400 ns。该探测器可用于量子传感、量子通信和量子信息处理等领域。
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