中红外基AZO纳米几何结构的光学可调性,通过表征等离子激元诱导共振模式

Debaleena Majumder, Ambarish Ghosh
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引用次数: 0

摘要

传统贵金属在红外区域的高损耗性质限制了它们在电磁波谱的UV-Vis部分的实现。因此,需要一种在红外波段具有大负介电常数的无损交替等离子体材料,这为探索透明导电氧化物(如铝掺杂氧化锌)铺平了道路。中红外等离子体响应对各种可调参数有很强的依赖性,其中最有效和最灵活的是几何参数。使用COMSOL Multiphysics进行详细的理论研究可以消除复杂制造工作的要求,以了解光信号的动态可调性。本研究的动机是系统地研究了形状因素对三种不同的AZO基等离子体平面纳米结构(Nonamer纳米天线、偶极子纳米天线和BowTie纳米天线)线性光学特性的影响。本工作研究的各种配置敏感光学模式的比较矩阵为探索和设计中红外光探测和基于传感器的设备提供了独特的可能性。
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Optical tunability of mid-IR based AZO nano geometries through the characterisation of plasmon induced resonance modes
The highly lossy nature of the conventional noble metals in the infrared region limits their implementation to the UV-Vis part of the electromagnetic spectrum. Hence, the necessity for a lossless alternate plasmonic material having large negative permittivity in the IR regime has paved the way for the exploration of transparent conducting oxides such as Aluminium doped Zinc Oxide. The mid-IR plasmonic response has a strong dependence on diverse tuneable parameters, the most efficient and flexible being the geometrical parameters. Detailed theoretical investigations using COMSOL Multiphysics can obliterate the requirement of complex fabrication efforts to understand the dynamic tunability of the optical signal. This study is motivated by the systematic investigation of the effect of shape factors on the linear optical properties of three different AZO based plasmonic planar nanostructures namely Nonamer, Dipole, and BowTie nanoantennas. A comparative matrix for various configuration sensitive optical modes investigated by this work provides a unique possibility to encompass the idea for exploration and design of mid-IR photodetection and sensor-based devices.
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