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优化硫族化物锥形光纤的倏逝效率

Optimizing Evanescent Efficiency of Chalcogenide Tapered Fiber.

作者信息

Zhao Xudong, Yao Ni, Zhang Xianghua, Zhang Lei, Tao Guangming, Li Zijian, Liu Quan, Zhao Xiujian, Xu Yinsheng

机构信息

State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.

Research Center for Intelligent Sensing, Zhejiang Laboratory, Hangzhou 311121, China.

出版信息

Materials (Basel). 2022 May 27;15(11):3834. doi: 10.3390/ma15113834.

Abstract

Evanescent wave absorption-based mid-infrared chalcogenide fiber sensors have prominent advantages in multicomponent liquid and gas detection. In this work, a new approach of tapered-fiber geometry optimization was proposed, and the evanescent efficiency was also theoretically calculated to evaluate sensing performance. The influence of fiber geometry (waist radius (), taper length (), waist deformation) on the mode distribution, light transmittance (), evanescent proportion () and evanescent efficiency () is discussed. Remarkably, the calculated results show that the evanescent efficiency can be over 10% via optimizing the waist radius and taper length. Generally, a better sensing performance based on tapered fiber can be achieved if the proportion of the -like mode becomes higher or becomes smaller. Furthermore, the radius of the waist boundary () was introduced to analyze the waist deformation. Mode proportion is almost unchanged as the increases, while is halved. In addition, the larger the micro taper is, the easier the taper process is. Herein, a longer waist can be obtained, resulting in larger sensing area which increases sensitivity greatly.

摘要

基于倏逝波吸收的中红外硫系光纤传感器在多组分液体和气体检测方面具有突出优势。在这项工作中,提出了一种锥形光纤几何结构优化的新方法,并从理论上计算了倏逝效率以评估传感性能。讨论了光纤几何结构(腰半径()、锥长()、腰部变形)对模式分布、光透射率()、倏逝比例()和倏逝效率()的影响。值得注意的是,计算结果表明,通过优化腰半径和锥长,倏逝效率可以超过10%。一般来说,如果类模式的比例变得更高或变得更小,基于锥形光纤可以实现更好的传感性能。此外,引入腰边界半径()来分析腰部变形。随着的增加,模式比例几乎不变,而减半。此外,微锥越大,锥化过程越容易。在此,可以获得更长的腰部,从而得到更大的传感面积,大大提高了灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96bf/9181228/42c5825c6c50/materials-15-03834-g001.jpg

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