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从 500nm 到 5μm 波长的高效单光子探测。

Efficient single photon detection from 500 nm to 5 μm wavelength.

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

出版信息

Nano Lett. 2012 Sep 12;12(9):4799-804. doi: 10.1021/nl302245n. Epub 2012 Aug 20.

Abstract

We report on superconducting nanowire single photon detectors (SNSPDs) based on 30 nm wide nanowires with detection efficiency η ∼ 2.6-5.5% in the wavelength range λ = 0.5-5 μm. We compared the sensitivity of 30 nm wide SNSPDs with the sensitivity of SNSPDs based on wider (85 and 50 nm wide) nanowires for λ = 0.5-5 μm. The detection efficiency of the detectors based on the wider nanowires became negligible at shorter wavelengths than the 30 nm wide SNSPDs. Our 30 nm wide SNSPDs showed 2 orders of magnitude higher detection efficiency (η ∼ 2%) up to longer wavelength (λ = 5 μm) than previously reported. On the basis of our simulations, we expect that by changing the optical coupling scheme and by integrating the detectors in an optical cavity, the detection efficiency of our detectors could be increased by a factor of ∼6.

摘要

我们报告了基于 30nm 宽纳米线的超导纳米线单光子探测器 (SNSPD),在 0.5-5μm 的波长范围内检测效率 η∼2.6-5.5%。我们比较了 30nm 宽 SNSPD 的灵敏度与基于更宽(85nm 和 50nm)纳米线的 SNSPD 的灵敏度在 0.5-5μm 的波长范围内的灵敏度。与 30nm 宽 SNSPD 相比,基于更宽纳米线的探测器在较短波长下的检测效率变得可以忽略不计。我们的 30nm 宽 SNSPD 显示出比以前报道的更高的检测效率(η∼2%)两个数量级,可达更长的波长(λ=5μm)。基于我们的模拟,我们预计通过改变光学耦合方案并将探测器集成在光学腔中,我们探测器的检测效率可以提高约 6 倍。

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