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Fiber-coupled NbN superconducting single-photon detectors for quantum correlation measurements

机译:光纤耦合NbN超导单光子探测器,用于量子相关测量

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We have fabricated fiber-coupled superconducting single-photon detectors (SSPDs), designed for quantum-correlationtype experiments. The SSPDs are nanostructured (~100-nm wide and 4-nm thick) NbN superconducting meandering stripes, operated in the 2 to 4.2 K temperature range, and known for ultrafast and efficient detection of visible to nearinfrared photons with almost negligible dark counts. Our latest devices are pigtailed structures with coupling between the SSPD structure and a single-mode optical fiber achieved using a micromechanical photoresist ring placed directly over the meander. The above arrangement withstands repetitive thermal cycling between liquid helium and room temperature, and we can reach the coupling efficiency of up to ~33%. The system quantum efficiency, measured as the ratio of the photons counted by SSPD to the total number of photons coupled into the fiber, in our early devices was found to be around 0.3 % and 1% for 1.55 urn and 0.9 μm photon wavelengths, respectively. The photon counting rate exceeded 250 MHz. The receiver with two SSPDs, each individually biased, was placed inside a transport, 60-liter liquid helium Dewar, assuring uninterrupted operation for over 2 months. Since the receiver's optical and electrical connections are at room temperature, the set-up is suitable for any applications, where single-photon counting capability and fast count rates are desired. In our case, it was implemented for photon correlation experiments. The receiver response time, measured as a second-order photon cross-correlation function, was found to be below 400 ps, with timing jitter of less than 40 ps.
机译:我们已经制造出光纤耦合超导单光子探测器(SSPD),设计用于量子相关型实验。 SSPD是纳米结构(约100 nm宽和4 nm厚)的NbN超导曲折条纹,工作于2至4.2 K的温度范围,以超快和高效的可见光至近红外光子检测而闻名,其暗计数几乎可以忽略不计。我们的最新设备是带尾纤的结构,在SSPD结构和单模光纤之间进行耦合,这种耦合是通过直接在曲折上方放置微机械光刻胶环实现的。上述布置可以承受液氦和室温之间反复的热循环,并且我们可以达到高达〜33%的耦合效率。在我们的早期设备中,发现系统量子效率以SSPD计数的光子与耦合到光纤中的光子总数之比来衡量,对于1.55 um和0.9μm的光子波长,分别约为0.3%和1%。 。光子计数率超过250 MHz。将带有两个SSPD的接收器(每个都单独偏置)放置在运输中的60升液态氦杜瓦瓶中,以确保2个月以上不间断运行。由于接收器的光学和电气连接均在室温下进行,因此该设置适用于需要单光子计数功能和快速计数速率的任何应用。在我们的案例中,它是用于光子相关实验的。接收器响应时间(以二阶光子互相关函数测量)低于400 ps,时序抖动小于40 ps。

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