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Optical fiber tip-based quartz-enhanced photoacoustic sensor for trace gas detection

机译:基于光纤尖端的石英增强型光声传感器,用于痕量气体检测

摘要

We reported the development of an evanescent-wave quartz-enhanced photoacoustic sensor (EW-QEPAS) using a single-mode optical fiber tip for sensitive gas detection in the extended near-infrared region. It is a spectroscopic technique based on the combination of quartz-enhanced photoacoustic spectroscopy with fiber-optic evanescent-wave absorption to achieve low optical noise, easy optical alignment, and high compactness. Carbon monoxide (CO) detection at 2.3 μm using a fiber-coupled, continuous-wave, distributed-feedback laser was selected for the sensor demonstration. By tapering the optical fiber down to 2.5 μm diameter using the flame-brushing technique, an evanescent field of ~0.6 mW around the fiber tip was absorbed by CO molecules. Besides an excellent linear response (R2 = 0.9996) to CO concentrations, the EW-QEPAS sensor achieved a normalized noise-equivalent absorption (NNEA) coefficient of 8.6 × 10−8 cm−1W/√Hz for an incident optical power of 1.8 mW and integration time of 1 s. The sensor detection sensitivity can be further improved by enhancing the evanescent-wave power on the fiber tip.
机译:我们报告了using逝波石英增强型光声传感器(EW-QEPAS)的开发,该传感器使用单模光纤尖端在扩展的近红外区域中进行敏感气体检测。它是一种将石英增强型光声光谱技术与光纤van逝波吸收技术相结合的光谱技术,可实现低光学噪声,易于光学对准和高紧凑性。选择使用光纤耦合,连续波,分布式反馈激光器在2.3μm的一氧化碳(CO)检测器进行传感器演示。使用火焰刷技术将光纤缩径至2.5μm直径时,CO分子吸收了光纤尖端周围约0.6mW的e逝场。除了对CO浓度具有出色的线性响应(R2 = 0.9996)外,EW-QEPAS传感器的入射光功率为1.8 mW时,归一化噪声当量吸收(NNEA)系数达到8.6 x 10-8 cm-1W /√Hz。积分时间为1秒。通过增强光纤末端的van逝波功率,可以进一步提高传感器的检测灵敏度。

著录项

  • 作者

    Li Z; Wang Z; Wang C; Ren W;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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