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纳米涂层D形光纤传感器的优化

Optimization in nanocoated D-shaped optical fiber sensors.

作者信息

Del Villar Ignacio, Zubiate Pablo, Zamarreño Carlos R, Arregui Francisco J, Matias Ignacio R

出版信息

Opt Express. 2017 May 15;25(10):10743-10756. doi: 10.1364/OE.25.010743.

Abstract

Nanocoated D-shaped optical fibers have been proven as effective sensors. Here, we show that the full width at half minimum (FWHM) of lossy mode resonance can be reduced by optimizing the nanocoating width, thickness and refractive index. As a counterpart, several resonances are observed in the optical spectrum for specific conditions. These resonances are caused by multiple modes guided in the nanocoating. By optimizing the width of the coating and the imaginary part of its refractive index, it is possible to isolate one of these resonances, which allows one to reduce the full width at half minimum of the device and, hence, to increase the figure of merit. Moreover, it is even possible to avoid the need of a polarizer by designing a device where the resonance bands for TE and TM polarization are centered at the same wavelength. This is interesting for the development of optical filters and sensors with a high figure of merit.

摘要

纳米涂层D形光纤已被证明是有效的传感器。在此,我们表明,通过优化纳米涂层的宽度、厚度和折射率,可以减小损耗模式共振的半高全宽(FWHM)。相应地,在特定条件下的光谱中观察到了多个共振。这些共振是由纳米涂层中导波的多个模式引起的。通过优化涂层的宽度及其折射率的虚部,可以分离出这些共振中的一个,这使得可以减小器件的半高全宽,从而提高品质因数。此外,通过设计一种TE和TM偏振的共振带以相同波长为中心的器件,甚至可以避免使用偏振器。这对于开发高品质因数的光学滤波器和传感器很有意义。

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