Department of Chemistry, University of Sheffield, Sheffield S3 7HF, United Kingdom.
J Chem Phys. 2010 Jul 28;133(4):044308. doi: 10.1063/1.3461061.
Cavity-enhanced resonant photoacoustic spectroscopy with optical feedback cw diode lasers (OF-CERPAS) is introduced as a novel technique for ultratrace gas analysis and high-resolution spectroscopy. In the scheme, a single-mode cw diode laser (3 mW, 635 nm) is coupled into a high-finesse linear cavity and stabilized to the cavity by optical feedback. Inside the cavity, a build-up of laser power to at least 2.5 W occurs. Absorbing gas phase species inside the cavity are detected with high sensitivity by the photoacoustic effect using a microphone embedded in the cavity. To increase sensitivity further, coupling into the cavity is modulated at a frequency corresponding to a longitudinal resonance of an organ pipe acoustic resonator (f=1.35 kHz and Q approximately 10). The technique has been characterized by measuring very weak water overtone transitions near 635 nm. Normalized noise-equivalent absorption coefficients are determined as alpha approximately 4.4x10(-9) cm(-1) s(1/2) (1 s integration time) and 2.6x10(-11) cm(-1) s(1/2) W (1 s integration time and 1 W laser power). These sensitivities compare favorably with existing state-of-the-art techniques. As an advantage, OF-CERPAS is a "zero-background" method which increases selectivity and sensitivity, and its sensitivity scales with laser power.
腔增强共振光声光谱学与光学反馈连续波二极管激光器(OF-CERPAS)被介绍为一种用于痕量气体分析和高分辨率光谱学的新技术。在该方案中,将单模连续波二极管激光器(3 mW,635nm)耦合到高精细度线性腔中,并通过光学反馈稳定到腔上。在腔内部,激光功率增加到至少 2.5 W。通过将麦克风嵌入腔中,利用光声效应检测腔内部吸收气相物质,具有很高的灵敏度。为了进一步提高灵敏度,将耦合到腔中的调制频率与声管谐振器的纵向共振(f=1.35 kHz,Q 约为 10)相对应。通过测量 635nm 附近非常弱的水泛频跃迁,对该技术进行了表征。归一化噪声等效吸收系数分别确定为 alpha 约为 4.4x10(-9) cm(-1) s(1/2)(1 s 积分时间)和 2.6x10(-11) cm(-1) s(1/2) W(1 s 积分时间和 1 W 激光功率)。这些灵敏度与现有最先进的技术相当。作为一个优势,OF-CERPAS 是一种“零背景”方法,可提高选择性和灵敏度,并且其灵敏度随激光功率线性增加。