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High absorption efficiency and polarization-insensitivity in superconducting-nanowire single-photon detectors

机译:超导纳米线单光子探测器中的高吸收效率和极化不敏感性

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The performance of superconducting-nanowire single-photon detectors depends on the efficiency of light absorption in the ultrathin (3-8 nm) superconducting nanowire. In this work, we will discuss two approaches to boost light absorption: coupling the nanowire to the evanescent field propagating in a waveguide and enclosing the nanowire in an optical cavity. The latter method is the most widely used, but it is intrinsically very sensitive to the polarization of light. To overcome this issue, we propose some innovative cavity designs which make use of high-index (n >2) dielectrics. With this technique, highly-efficient polarization-insensitive devices can be easily implemented.
机译:超导 - 纳米线单光子探测器的性能取决于超薄(3-8nm)超导纳米线中的光吸收效率。在这项工作中,我们将讨论两种促进光吸收的方法:将纳米线耦合到在波导中传播的渐逝场并将纳米线封闭在光学腔中。后一种方法是最广泛使用的,但它对光的极化是本质上非常敏感的。为了克服这个问题,我们提出了一些创新的腔设计,这是利用高索引(N> 2)电介质的创新腔设计。利用这种技术,可以容易地实现高效的极化不敏感装置。

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