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Computational study of nanostructured composite materials for photonic crystal fibre sensors.

机译:用于光子晶体光纤传感器的纳米复合材料的计算研究。

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摘要

Photonic Crystal Fibres (PCFs) developed using nanostructured composite materials provides special optical properties which can revolutionise current optical sensing technologies. The modal and propagation characteristics of the PCF can be tailored by altering their geometrical parameters and material infiltrations. A drawback of commercially available PCF is their limited operating wavelengths, which is mostly in the infrared (IR) spectral band. Nanostructured composite materials manipulates the optical properties of the PCF, facilitating their operation in the higher sensitivity near infrared (NIR) wavelength regime. Hence, there arises a need to closely investigate the effect of nanostructure and composite materials on various optical parameters of the PCF sensor. This paper presents a hexagonal PCF designed using COMSOL MULTIPHYSICS 5.1 software, with a nanostructured core and microstructured cladding. Propagation characteristics like confinement loss and mode field diameter (MFD) are investigated and compared with various geometrical parameters like core diameter, cladding hole diameter, pitch, etc. Theoretical study revealed that a nanostructured PCF experiences reduced confinement losses and also improved mode field diameter. Furthermore, studies are also carried out by infiltrating the cladding holes with composite materials (liquid crystal and glass). These simulations helped in analysing the effect of different liquid crystal materials on PCF bandwidth and spectral positions.
机译:使用纳米结构复合材料开发的光子晶体光纤(PCF)具有特殊的光学特性,可以彻底改变当前的光学传感技术。 PCF的模态和传播特性可以通过更改其几何参数和材料渗透来调整。市售PCF的缺点是它们的工作波长有限,该波长主要在红外(IR)光谱带中。纳米结构复合材料可控制PCF的光学特性,从而有助于其在更高灵敏度的近红外(NIR)波长范围内运行。因此,需要密切研究纳米结构和复合材料对PCF传感器的各种光学参数的影响。本文介绍了使用COMSOL MULTIPHYSICS 5.1软件设计的六角形PCF,具有纳米结构的纤芯和微结构的包层。研究了诸如禁闭损耗和模场直径(MFD)的传播特性,并将其与各种几何参数(如纤芯直径,包层孔直径,节距等)进行了比较。理论研究表明,纳米结构的PCF可以减少禁闭损耗并提高模场直径。此外,还通过用复合材料(液晶和玻璃)渗透覆层孔来进行研究。这些模拟有助于分析不同液晶材料对PCF带宽和光谱位置的影响。

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