首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Analyzing the application of silicon-silver-2D nanomaterial-Al2O3 heterojunction in plasmonic sensor and its performance evaluation
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Analyzing the application of silicon-silver-2D nanomaterial-Al2O3 heterojunction in plasmonic sensor and its performance evaluation

机译:硅 - 银纳米材料 - Al2O3异质结在等离子体传感器中的应用及其性能评价分析

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摘要

A semiconductor-metal-dielectric heterojunction system, generally useful in enhancing the efficiency of solar cells, is explored to design a high performance optical sensor based on surface plasmon resonance in near infrared (NIR). Silicon is considered as light coupling material and different 2D nanomaterials such as graphene, MoS2, and MoSe2 are explored to enhance the sensor's performance in terms of its figure of merit (FOM). An Al2O3 interlayer with a few nanometers of thickness is introduced, which acts as a critical component to significantly enhance the sensor's FOM. It is observed that an Al2O3 interlayer of around 9 nm thickness is able to many-fold upturn the sensor's FOM. As another important finding, silver layer thickness of around 60 nm is found to be highly useful to achieve high values of FOM. It is established through results that operating at longer NIR wavelength leads to greater FOM for any choice of 2D nanomaterial and any thickness of Al2O3 interlayer. Proposed sensor provides significantly greater FOM than previous works on SPR sensors. (C) 2017 Elsevier B.V. All rights reserved.
机译:探索了一种半导体 - 金属介电异质结系统,通常可用于提高太阳能电池效率,以设计基于近红外(NIR)的表面等离子体共振的高性能光学传感器。硅被认为是光耦合材料和不同的2D纳米材料,如石墨烯,MOS2和MOSE2,以提高传感器的性能(FOM)。引入具有几纳米厚度的AL2O3中间层,其用作关键部件,以显着增强传感器的FOM。观察到,大约9nm厚的Al2O3中间层能够多倍地升高传感器的FOM。作为另一个重要的发现,发现厚度约为60nm的银层厚度对于实现高值的FOM是非常有用的。通过在较长的NIR波长下操作的结果来建立,导致任何选择的2D纳米材料和任何厚度的Al2O3中间层的更大的FOM。所提出的传感器提供比以前的SPR传感器的工作更大。 (c)2017年Elsevier B.V.保留所有权利。

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