Wang Zhen, Wang Qiang, Zhang Weipeng, Wei Haoyun, Li Yan, Ren Wei
Opt Lett. 2019 Apr 15;44(8):1924-1927. doi: 10.1364/OL.44.001924.
We demonstrate an ultrasensitive photoacoustic sensor using a low laser power (4 mW) and high-finesse (>9000) optical cavity. The Pound-Drever-Hall (PDH) method is adopted to lock the external cavity diode laser at 1531.58 nm to the Fabry-Pérot cavity. By placing a photoacoustic cell inside the 130-mm-long optical cavity, we obtain an enhancement of more than 630 times in laser power for acetylene (CH) detection. The present photoacoustic spectroscopy (PAS) sensor achieves a normalized noise equivalent absorption coefficient of 1.1×10 cm WHz, which is unprecedented sensitivity among all the current PAS sensors. Our results demonstrate the feasibility of merging PAS with a high-finesse cavity using PDH locking for ultrasensitive trace gas detection.
我们展示了一种使用低激光功率(4毫瓦)和高精细度(>9000)光学腔的超灵敏光声传感器。采用庞德-德弗-霍尔(PDH)方法将外腔二极管激光器在1531.58纳米处锁定到法布里-珀罗腔。通过将光声池放置在130毫米长的光学腔内,我们在乙炔(CH)检测中获得了超过630倍的激光功率增强。当前的光声光谱(PAS)传感器实现了1.1×10 cm WHz的归一化噪声等效吸收系数,这在所有当前的PAS传感器中是前所未有的灵敏度。我们的结果证明了使用PDH锁定将PAS与高精细度腔合并用于超灵敏痕量气体检测的可行性。