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Widely tunable, high optical signal-to-noise ratio erbium-doped photonic crystal fiber laser suitable for acetylene sensing

机译:广泛调谐,高光学信噪比铒掺杂光子晶体光纤激光器适用于乙炔传感

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摘要

Narrow line width fiber lasers are useful in gas-sensing, but systems that are both tunable and stable are rare. Here, we describe a single-wavelength ring cavity erbium-doped photonic crystal fiber laser (ED-PCFL) that can align the acetylene (C2H2) gas absorption peak with high precision and a maximum deviation less than 0.012 nm. Rather than using a combination of erbium-doped fiber and a strong nonlinear fiber, ED-PCF was used as a gain medium to achieve a stable single-wavelength output based on the nonlinear polarization rotation effect (NPR). This was selected because ED-PCF has a strong nonlinear effect. We added the dual polarization controllers (PCs) to weaken the homogeneous broadening based on the traditional tunable filter (TF) filtering structure. The results show that these steps improve the tunability of the laser wavelength and enhance the stability of the light source. The final laser had a side-mode suppression ratio as high as 60 dB over 45 nm with a maximum fluctuation in wavelength less than 6 pm. The peak power standard deviation was similar to 0.03 dB during the 2 h experimental time. The peak power response of ED-PCFL was studied as a function of C2H2 concentrations, and the calculated R-squared value was 0.993. This means that the ED-PCFL is suitable for C2H2 sensing. (C) 2018 Elsevier Ltd. All rights reserved.
机译:窄线宽光纤激光器可用于气体传感,但可调谐且稳定的系统罕见。这里,我们描述了一种单波长环腔掺铒光子晶体光纤激光器(ED-PCFL),其可以高精度和最大偏差对准乙炔(C2H2)气体吸收峰值和小于0.012nm的最大偏差。而不是使用掺铒光纤和强非线性光纤的组合,使用ED-PCF作为增益介质,以基于非线性偏振旋转效应(NPR)来实现稳定的单波长输出。选择这是因为ED-PCF具有强烈的非线性效果。我们添加了双偏振控制器(PCS),以削弱基于传统的可调滤波器(TF)滤波结构的均匀扩展。结果表明,这些步骤改善了激光波长的可调性,增强了光源的稳定性。最终的激光器具有高达60dB的侧面抑制比,超过45nm,波长在下午6μm的最大波动。峰值功率标准偏差在2小时实验时间期间类似于0.03 dB。研究了ED-PCFL的峰值功率响应作为C2H2浓度的函数,并且计算的R方值为0.993。这意味着ED-PCFL适用于C2H2感测。 (c)2018年elestvier有限公司保留所有权利。

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