Guo Min, Zhao Xinyu, Chen Ke, Cui Dongyu, Zhang Guangyin, Li Chenxi, Gong Zhenfeng, Yu Qingxu
School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian 116024, Liaoning, China.
Photoacoustics. 2023 Jan 4;29:100449. doi: 10.1016/j.pacs.2023.100449. eCollection 2023 Feb.
To realize the real-time highly sensitive detection of SF decomposition product HS, a multi-mechanism collaboration enhancement photoacoustic spectroscopy analyzer (MCEPA) based on acoustic resonance enhancement, cantilever enhancement and excitation light enhancement is proposed. An SF background gas-induced photoacoustic cell (PAC) was used for acoustic resonance (AR) enhancement of the photoacoustic signals. A fiber-optic acoustic sensor based on a silicon cantilever is optimized and fabricated. The narrow-band acoustic signal enhancement based on cantilever mechanical resonance (MR) is realized in the optimal working frequency band of the PAC. A fiber-coupled DFB cascaded an Erbium-doped fiber amplifier (EDFA) realized the light power enhancement (LPE) of the photoacoustic signals excitation source. Experimental results show that the MR of the fiber-optic silicon cantilever acoustic sensor (FSCAS) is matched with the AR of the PAC and combined with the LPE, which realizes the multi-mechanism collaboration enhancement of weak photoacoustic signals. The Allan-Werle deviation evaluation showed that the minimum detection limit of HS in the SF background is 10.96 ppb when the average time is 200 s. Benefiting from the all-optimization of photoacoustic excitation and detection, the MCEPA has near-field high-sensitivity gas detection capability immune to electromagnetic interference.
为实现对SF分解产物HS的实时高灵敏检测,提出了一种基于声共振增强、悬臂梁增强和激发光增强的多机制协同增强光声光谱分析仪(MCEPA)。采用SF背景气体诱导光声池(PAC)对光声信号进行声共振(AR)增强。优化制作了基于硅悬臂梁的光纤声学传感器。在PAC的最佳工作频段内实现了基于悬臂梁机械共振(MR)的窄带声信号增强。光纤耦合分布反馈(DFB)级联掺铒光纤放大器(EDFA)实现了光声信号激发源的光功率增强(LPE)。实验结果表明,光纤硅悬臂梁声学传感器(FSCAS)的MR与PAC的AR相匹配,并结合LPE,实现了微弱光声信号的多机制协同增强。Allan-Werle偏差评估表明,在平均时间为200 s时,SF背景中HS的最低检测限为10.96 ppb。得益于光声激发和检测的全面优化,MCEPA具有近场高灵敏度气体检测能力且不受电磁干扰。