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Guidewave surface plasmon-polariton sensors

机译:导波表面等离子体激元极化传感器

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摘要

Theoretical models of surface plasmon-polariton (SPP) refractive index sensors with Bragg grating and long period grating (LPG) are presented and comprehensively investigated for fiber and planar structures. The main principle of operation of these devices is based on high efficiency energy transfer between a guided mode propagating in a waveguide layer of the structure and counter- or co-propagating SPP supported by a metal layer separated from the waveguide layer by a buffer. The high efficiency energy transfer is realized by means of a properly designed Bragg grating or LPG imprinted in the waveguide layers of the structures or engraved on the top of the metal layer. These devices are compact, free from any moving parts and can be easily integrated into any fiber or planar schemes. Our simulations are made for telecom wavelengths in the 1500nm window.
机译:提出了具有布拉格光栅和长周期光栅(LPG)的表面等离子体激元(SPP)折射率传感器的理论模型,并对光纤和平面结构进行了全面研究。这些装置的主要工作原理是基于在结构的波导层中传播的导模与由缓冲层与波导层分开的金属层支撑的反向或共向传播的SPP之间的高效能量转移。高效的能量转移是通过适当设计的布拉格光栅或LPG来实现的,该光栅刻在结构的波导层中或刻在金属层的顶部。这些设备结构紧凑,没有任何活动部件,并且可以轻松集成到任何光纤或平面方案中。我们针对1500nm窗口中的电信波长进行了仿真。

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