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Light trapping and surface plasmon enhanced high-performance NIR photodetector

机译:捕光和表面等离激元增强型高性能NIR光电探测器

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摘要

Heterojunctions near infrared (NIR) photodetectors have attracted increasing research interests for their wide-ranging applications in many areas such as military surveillance, target detection, and light vision. A high-performance NIR light photodetector was fabricated by coating the methyl-group terminated Si nanowire array with plasmonic gold nanoparticles (AuNPs) decorated graphene film. Theoretical simulation based on finite element method (FEM) reveals that the AuNPs@graphene/CH3-SiNWs array device is capable of trapping the incident NIR light into the SiNWs array through SPP excitation and coupling in the AuNPs decorated graphene layer. What is more, the coupling and trapping of freely propagating plane waves from free space into the nanostructures, and surface passivation contribute to the high on-off ratio as well.
机译:异质结近红外(NIR)光电探测器因其在军事监视,目标检测和视觉等许多领域的广泛应用而吸引了越来越多的研究兴趣。通过用等离激元金纳米颗粒(AuNPs)装饰的石墨烯膜涂覆甲基封端的Si纳米线阵列,制造出了高性能NIR光探测器。基于有限元方法(FEM)的理论仿真表明,AuNPs @ graphene / CH3-SiNWs阵列器件能够通过SPP激发和耦合在AuNPs装饰的石墨烯层中将入射的近红外光捕获到SiNWs阵列中。此外,自由传播的平面波从自由空间进入纳米结构的耦合和俘获以及表面钝化也有助于高开关比。

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