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'All-fiber' tunable laser in the 2 μm region, designed for CO_2 detection

机译:在2μm范围内的“全光纤”可调激光器,专为CO_2检测而设计

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摘要

A stable and tunable thulium-doped "all-fiber" laser offering a narrow linewidth has been created specifically to act as a compact and simple laser source for gaseous CO_2 detection. This has been done through a careful design to match the laser output wavelengths to the CO_2 absorption lines at 1.875 and 1.997 μm, respectively. A sustainable output power of 11 mW over a tuning range of 7 nm has been obtained by using a combination of a high-reflective fiber Bragg grating with a low-reflective broadband mirror, fabricated at the end of the fiber through silver film deposition. The tuning was achieved using the relaxation-compression mechanism of the fiber Bragg grating, which formed an integral part of the laser resonant cavity. A fiber Bragg grating at 1.548 μm was utilized as a wavelength reference to monitor the tuning of the laser output over the 2 μm wavelength range with a simple and inexpensive interrogator, to avoid the use of an expensive optical spectrum analyzer and to facilitate "in-the-field" operation. This "all-fiber" laser resonator has been shown to be superior in terms of laser tuning range, output power, and linewidth compared to that created with a fiber Bragg grating pair, which was limited by the nonuniform strain transfer to both fiber Bragg gratings.
机译:一种稳定且可调谐的掺“的“全光纤”激光器提供了窄的线宽,专门用作紧凑且简单的激光源,用于气态CO_2检测。这是通过精心设计完成的,以使激光输出波长分别与1.875μm和1.997μm的CO_2吸收线匹配。通过将高反射光纤布拉格光栅与低反射宽带反射镜结合使用,可以在7纳米的调谐范围内获得11 mW的可持续输出功率,该反射镜是通过银膜沉积在光纤的末端制成的。使用光纤布拉格光栅的弛豫压缩机制实现了调谐,该机制形成了激光谐振腔的组成部分。使用1.548μm的布拉格光纤光栅作为波长参考,通过一个简单且便宜的询问器在2μm波长范围内监视激光输出的调谐,以避免使用昂贵的光谱分析仪,并简化了“ in-in现场”操作。与光纤布拉格光栅对相比,这种“全光纤”激光谐振器在激光调谐范围,输出功率和线宽方面均表现出优异的性能,这受到光纤布拉格光栅对不均匀应变传递的限制。 。

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