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Repetitively Mode-Locked Cavity-Enhanced Absorption Spectroscopy (RML-CEAS) for Near-Infrared Gas Sensing

机译:重复锁模腔增强吸收光谱(RML-CEAS)用于近红外气体传感

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摘要

A Pound-Drever-Hall (PDH)-based mode-locked cavity-enhanced sensor system was developed using a distributed feedback diode laser centered at 1.53 µm as the laser source. Laser temperature scanning, bias control of the piezoelectric ceramic transducer (PZT) and proportional-integral-derivative (PID) feedback control of diode laser current were used to repetitively lock the laser modes to the cavity modes. A gas absorption spectrum was obtained by using a series of absorption data from the discrete mode-locked points. The 15 cm-long Fabry-Perot cavity was sealed using an enclosure with an inlet and outlet for gas pumping and a PZT for cavity length tuning. The performance of the sensor system was evaluated by conducting water vapor measurements. A linear relationship was observed between the measured absorption signal amplitude and the H2O concentration. A minimum detectable absorption coefficient of 1.5 × 10–8 cm–1 was achieved with an averaging time of 700 s. This technique can also be used for the detection of other trace gas species by targeting the corresponding gas absorption line.
机译:使用以1.53 µm为中心的分布式反馈二极管激光器作为激光源,开发了基于磅-霍尔(PDH)的锁模腔增强传感器系统。激光温度扫描,压电陶瓷换能器(PZT)的偏置控制和二极管激光电流的比例积分微分(PID)反馈控制用于将激光模式重复锁定到腔模式。通过使用来自离散锁模点的一系列吸收数据获得气体吸收光谱。使用带进气口和出口(用于抽气)和PZT(用于调整腔长)的外壳密封15厘米长的Fabry-Perot腔。通过进行水蒸气测量来评估传感器系统的性能。在测量的吸收信号振幅和H 2 O浓度之间观察到线性关系。平均时间为700 s,可检测到的最小吸收系数为1.5×10 –8 cm -1 。通过瞄准相应的气体吸收线,该技术还可用于检测其他痕量气体。

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