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Design of narrow band-pass filters based on the resonant-tunneling phenomenon in multi-core photonic crystal fibers

机译:基于多芯光子晶体光纤谐振隧道现象的窄带通滤波器设计

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摘要

The objective of the present paper is to introduce and numerically demonstrate the operation of a novel band-pass filter based on the phenomenon of resonant tunneling inmulti-core photonic crystal fibers (PCFs). The proposed PCF consists of two identical cores separated by a third one which acts as a resonator. With a fine adjustment of the design parameters associated with the resonant-core, phase matching at a single wavelength can be achieved, thus enabling very narrow-band resonant directional coupling between the input and the output cores. The validation of the design is ensured with an accurate PCF analysis based on finite element and beam propagation algorithms. The proposed narrow band-pass filter can be employed in various applications such as all fiber and pass/bandstop filtering.
机译:本文的目的是介绍并基于多芯光子晶体光纤(PCFs)中的共振隧穿现象,对新型带通滤波器的工作进行数值模拟。提出的PCF由两个相同的磁芯组成,并由用作谐振器的第三个磁芯隔开。通过与谐振磁芯相关的设计参数的微调,可以实现单个波长的相位匹配,从而实现输入和输出磁芯之间非常窄带的谐振定向耦合。基于有限元和光束传播算法的准确PCF分析可确保设计的有效性。所提出的窄带通滤波器可用于各种应用中,例如所有光纤和通/带阻滤波器。

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