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Superconducting nanowire single-photon detectors with non-periodic dielectric multilayers

机译:具有非周期性介电多层的超导纳米线单光子探测器

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摘要

We present superconducting nanowire single-photon detectors (SSPDs) on non-periodic dielectric multilayers, which enable us to design a variety of wavelength dependences of optical absorptance by optimizing the dielectric multilayer. By adopting a robust simulation to optimize the dielectric multilayer, we designed three types of SSPDs with target wavelengths of 500 nm, 800 nm, and telecom range respectively. We fabricated SSPDs based on the optimized designs for 500 and 800 nm, and evaluated the system detection efficiency at various wavelengths. The results obtained confirm that the designed SSPDs with non-periodic dielectric multilayers worked well. This versatile device structure can be effective for multidisciplinary applications in fields such as the life sciences and remote sensing that require high efficiency over a precise spectral range and strong signal rejection at other wavelengths.
机译:我们提出了非周期性介电多层上的超导纳米线单光子探测器(SSPD),这使我们能够通过优化介电多层来设计各种光学吸收率的波长依赖性。通过采用鲁棒的仿真来优化电介质多层,我们设计了三种类型的SSPD,目标波长分别为500 nm,800 nm和电信范围。我们基于针对500和800nm的优化设计制造了SSPD,并评估了各种波长下的系统检测效率。获得的结果证实,具有非周期性介电多层的设计SSPD效果良好。这种通用的设备结构可有效用于要求生命科学和遥感领域中的多学科应用,这些领域要求在精确的光谱范围内具有高效率,并在其他波长下具有较强的信号抑制能力。

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