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光子晶体光纤中的布洛赫表面波共振:迈向超宽范围折射率传感器

Bloch surface wave resonance in photonic crystal fibers: towards ultra-wide range refractive index sensors.

作者信息

Gonzalez-Valencia Esteban, Herrera Rodrigo Acuna, Torres Pedro

出版信息

Opt Express. 2019 Mar 18;27(6):8236-8245. doi: 10.1364/OE.27.008236.

Abstract

In this work, a new approach based on the use of a one-dimensional photonic crystal (1DPC) made of dielectric layers with alternating refractive indexes deposited inside a photonic crystal fiber (PCF) is proposed as a suitable platform for the excitation of Bloch surface waves (BSWs). The presence of an additional dielectric layer on the 1DPC modifies the local effective refractive index, enabling a direct manipulation of the BSWs. In particular, we investigate BSW resonance conditions in a 1DPC of alternating layers of TiO and SiO deposited inside a three-hole suspended-core PCF to design an ultra-wide range refractive index sensor in the near infrared. The obtained simulation results indicate that BSW sensors based on PCF could be an alternative to surface plasmon resonance (SPR) sensors, with a ultrahigh sensing figure-of-merit, which might facilitate applications in high-resolution refractive index sensing.

摘要

在这项工作中,提出了一种基于使用由具有交替折射率的介电层制成的一维光子晶体(1DPC)的新方法,该一维光子晶体沉积在光子晶体光纤(PCF)内部,作为激发布洛赫表面波(BSW)的合适平台。在1DPC上存在额外的介电层会改变局部有效折射率,从而能够直接操纵BSW。特别是,我们研究了沉积在三孔悬浮芯PCF内部的TiO和SiO交替层的1DPC中的BSW共振条件,以设计一种近红外波段的超宽范围折射率传感器。获得的模拟结果表明,基于PCF的BSW传感器可能是表面等离子体共振(SPR)传感器的一种替代方案,具有超高的传感品质因数,这可能有助于在高分辨率折射率传感中的应用。

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