首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Double plasmon induced transparency in disk and nanobars coupled nanosystems and its application to plasmonic resonance sensing
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Double plasmon induced transparency in disk and nanobars coupled nanosystems and its application to plasmonic resonance sensing

机译:双等离子体激元在磁盘和纳米棒耦合纳米系统中诱导的透明性及其在等离子体共振传感中的应用

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摘要

We demonstrate the realization of plasmon induced transparency (PIT) in a nanostructure composed of silver nanobars and a silver nanodisk. The optical properties of the planar metamaterials have been investigated theoretically in the paper. The classical coupled harmonic oscillator model demonstrates the PIT phenomenon in a nanodisk nanobar system. Additionally, double PIT response is observed when two nanobars are located in proximity to the silver nanodisk. The PIT window wavelength and bandwidths can be efficiently tuned by controlling the geometric parameters such as the lengths of nanobars and the coupling distances between the nanodisk and nanobars. Moreover, the transparency window shows highly sensitive response to the refractive index of the environmental medium. A high figure of merit up to 15.5 of the asymmetrical system for refractive index sensing is achieved. The tunability of the PIT may have potential application on slow light and highly integrated optical circuits.
机译:我们展示了由银纳米棒和银纳米盘组成的纳米结构中等离激元诱导的透明性(PIT)的实现。在理论上已经研究了平面超材料的光学性质。经典耦合谐波振荡器模型证明了在纳米盘纳米棒系统中的PIT现象。此外,当两个纳米棒位于银纳米盘附近时,会观察到双PIT响应。通过控制几何参数(例如纳米棒的长度以及纳米盘和纳米棒之间的耦合距离),可以有效地调整PIT窗口的波长和带宽。而且,透明窗对环境介质的折射率显示出高度敏感的响应。实现了不对称系统的15.5的高品质因数,可用于折射率传感。 PIT的可调性可能在慢光和高度集成的光学电路上具有潜在的应用。

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