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Improvement of infrared single-photon detectors absorptance by integrated plasmonic structures

机译:集成等离激元结构改善红外单光子探测器的吸收率

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摘要

Plasmonic structures open novel avenues in photodetector development. Optimized illumination configurations are reported to improve p-polarized light absorptance in superconducting-nanowire single-photon detectors (SNSPDs) comprising short- and long-periodic niobium-nitride (NbN) stripe-patterns. In OC-SNSPDs consisting of ~quarter-wavelength dielectric layer closed by a gold reflector the highest absorptance is attainable at perpendicular incidence onto NbN patterns in P-orientation due to E-field concentration at the bottom of nano-cavities. In NCAI-SNSPDs integrated with nano-cavity-arrays consisting of vertical and horizontal gold segments off-axis illumination in S-orientation results in polar-angle-independent perfect absorptance via collective resonances in short-periodic design, while in long-periodic NCAI-SNSPDs grating-coupled surface waves promote EM-field transportation to the NbN stripes and result in local absorptance maxima. In NCDAI-SNSPDs integrated with nano-cavity-deflector-array consisting of longer vertical gold segments large absorptance maxima appear in 3p-periodic designs due to E-field enhancement via grating-coupled surface waves synchronized with the NbN stripes in S-orientation, which enable to compensate fill-factor-related retrogression.
机译:等离子体激元结构为光电探测器的发展开辟了新途径。据报道,优化的照明配置可改善包括短周期和长周期氮化铌(NbN)条纹图案的超导纳米线单光子探测器(SNSPD)中的p偏振光吸收率。在由被金反射器封闭的约四分之一波长介电层组成的OC-SNSPD中,由于纳米腔体底部的电场集中,在P取向的NbN图案上垂直入射时可获得最高的吸收率。在NCAI-SNSPD中,集成了由垂直和水平金段组成的纳米腔阵列,S方向的离轴照明可通过短周期设计中的集体共振产生独立于极角的完美吸收率,而在长周期NCAI中-SNSPD光栅耦合的表面波促进了电磁场向NbN条纹的传输,并导致局部吸收率最大值。在NCDAI-SNSPD集成了由更长的垂直金段组成的纳米腔偏转器阵列的情况下,由于E场通过与S取向的NbN条纹同步的光栅耦合表面波增强了电场,因此在3p周期设计中出现了较大的吸收率最大值,它可以补偿与填充因子相关的回归。

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