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Femtosecond laser fabrication of long period fiber gratings by a transversal-scanning inscription method and the research of its orientational bending characteristics

机译:横向扫描刻写法制造飞秒激光的长周期光纤光栅及其取向弯曲特性的研究

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摘要

In order to make the whole fiber core modified, an improved point-by-point inscription method (called a transversal-scanning inscription method) is proposed to fabricate long period fiber gratings (LPFGs) by using femtosecond laser. LPFGs with an attenuation depth of 16 dB are achieved within the wavelength range of 1580-1680 nm. We have compared the bending properties of LPFGs fabricated by the line-by-line scanning inscription method and the transversal-scanning inscription method at the orthogonal directions. It is found that increasing scanning area using the transversal-scanning method can enhance the bend sensitivity obviously. The resulting curvature sensitivities are -4.82 nm/m(-1) and -1.63 nm/m(-1) at the 0 degrees and 90 degrees bend orientations respectively, within the curvature range from 1.75 m(-1) to 3 m(-1) in the experiment. The LPFG-I fabricated by the line-by-line scanning inscription method experiences red-shift, while the LPFG-II fabricated by the transversal-scanning inscription method experiences blue-shift. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了使整个光纤纤芯得到修改,提出了一种改进的逐点刻录方法(称为横向扫描刻录方法),以使用飞秒激光制造长周期光纤光栅(LPFG)。在1580-1680 nm的波长范围内可实现衰减深度为16 dB的LPFG。我们已经比较了在垂直方向上通过逐行扫描铭文方法和横向扫描铭文方法制造的LPFG的弯曲性能。发现采用横向扫描法增加扫描面积可以明显提高弯曲灵敏度。在1.75 m(-1)至3 m(的曲率范围内)分别在0度和90度弯曲方向上产生的曲率灵敏度分别为-4.82 nm / m(-1)和-1.63 nm / m(-1) -1)在实验中。通过逐行扫描铭文方法制造的LPFG-I经历红移,而通过横向扫描铭文方法制造的LPFG-II经历蓝移。 (C)2015 Elsevier Ltd.保留所有权利。

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