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Modeling of Plasmon-Polariton Refractive-Index Hollow Core Fiber Sensors Assisted by a Fiber Bragg Grating

机译:布拉格光栅辅助的等离激元折射率空心纤芯光纤传感器的建模

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摘要

The theoretical model of a new hollow core fiber sensor based on the specific properties of the surface plasmon polariton (SPP) excited with a fiber Bragg grating is proposed and comprehensively investigated. The main principle of operation of this new device is based on the efficient energy transfer between the fiber waveguide mode (FWM) and the SPP provided by a properly designed short-period fiber Bragg grating imprinted into a waveguide fiber layer of a specially designed hollow core optical fiber. The waveguide fiber layer is the dielectric layer of the fiber with the highest refractive index. The FWM is a fiber mode oscillating in this layer and exponentially decaying in all other fiber layers. Presented for the cylindrical (fiber) geometry, the scheme without loss of generality can be applied to the planar geometry. The simulations are based on the coupled mode theory and performed for well-developed telecom wavelength ranges.
机译:提出了一种新型的基于光纤布拉格光栅激发的表面等离激元极化子(SPP)特性的新型空心光纤传感器的理论模型。这种新设备的主要工作原理是基于光纤波导模式(FWM)和SPP之间的有效能量传递,该方法是通过将经过适当设计的短周期光纤布拉格光栅压印到特殊设计的中空芯的波导光纤层中来提供的光纤。波导纤维层是具有最高折射率的纤维的介电层。 FWM是在该层中振荡并在所有其他光纤层中呈指数衰减的光纤模式。对于圆柱(纤维)几何图形,可以在不损失一般性的情况下将方案应用于平面几何图形。该仿真基于耦合模式理论,并针对发达的电信波长范围执行。

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