Giglio Marilena, Elefante Arianna, Patimisco Pietro, Sampaolo Angelo, Sgobba Fabrizio, Rossmadl Hubert, Mackowiak Verena, Wu Hongpeng, Tittel Frank K, Dong Lei, Spagnolo Vincenzo
Opt Express. 2019 Feb 18;27(4):4271-4280. doi: 10.1364/OE.27.004271.
The design and realization of two highly sensitive and easily interchangeable spectrophones based on custom quartz tuning forks, with a rectangular (S) or T-shaped (S) prongs geometry, is reported. The two spectrophones have been implemented in a QEPAS sensor for ethylene detection, employing a DFB-QCL emitting at 10.337 μm with an optical power of 74.2 mW. A comparison between their performances showed a signal-to-noise ratio 3.4 times higher when implementing the S spectrophone. For the S-based sensor, a linear dependence of the QEPAS signal on ethylene concentration was demonstrated in the 5 ppm -100 ppm range. For a 10 s lock-in integration time, an ethylene minimum detection limit of 10 ppb was calculated.
报道了基于定制石英音叉的两种高灵敏度且易于互换的分光传声器的设计与实现,其叉指几何形状为矩形(S)或T形(S)。这两种分光传声器已应用于用于乙烯检测的QEPAS传感器中,采用了发射波长为10.337μm、光功率为74.2 mW的分布反馈量子级联激光器(DFB-QCL)。它们性能的比较表明,采用S分光传声器时信噪比高出3.4倍。对于基于S的传感器,在5 ppm至100 ppm范围内证明了QEPAS信号与乙烯浓度呈线性相关。对于10 s的锁定积分时间,计算出乙烯的最低检测限为10 ppb。