Krzempek Karol, Dudzik Grzegorz, Abramski Krzysztof
Opt Express. 2018 Oct 29;26(22):28861-28871. doi: 10.1364/OE.26.028861.
A novel configuration of a photothermal gas sensor is demonstrated. Photothermal-induced gas refractive index (RI) modulation is probed by a simple, mode-locked (ML) ring cavity fiber laser, operating in the 1.55 µm wavelength region. The measured gas sample is placed in an open-path section of the ML laser and the RI variations directly translate to its optical path-length change, which is easily detectable as pulse repetition frequency deviations. Wavelength modulation spectroscopy (WMS) technique was used along with a custom-built FM demodulator simplifying the signal retrieval and acquisition. Normalized noise equivalent coefficient calculated for the sensor was 1 x 10 cm W Hz.
展示了一种新型的光热气体传感器配置。通过在1.55 µm波长区域工作的简单锁模(ML)环形腔光纤激光器探测光热诱导的气体折射率(RI)调制。将被测气体样品置于ML激光器的开放路径部分,RI变化直接转化为其光程长度变化,这很容易作为脉冲重复频率偏差检测到。波长调制光谱(WMS)技术与定制的调频解调器一起使用,简化了信号检索和采集。该传感器计算出的归一化噪声等效系数为1×10 cm W Hz。