Wu Tao, Zhao Wei-Xiong, Li Jin-Song, Zhang Wei-Jun, Chen Wei-Dong, Gao Xiao-Ming
Laboratory of Environment Spectroscopy, Anhui Institute of Optics and Fine Mechanics, Chinese Academic of Sciences, Hefei 230031, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2008 Nov;28(11):2469-72.
High sensitivity incoherent broadband cavity enhanced absorption spectroscopy based on high power LED was developed. The detection sensitivity was demonstrated by measuring the absorption of NO2 over the wavelength range of 472. 3-479. 3 nm. A broadband incoherent light (emitting from high power LED peaked at 457 nm) was coupled to a 92.5 cm long high finesse optical cavity consisting of two 30 mm diameter plano-concave mirrors (1.0 m radius of curvature) with reflectivity of -0.997 (provided by manufacturer). The light leaked out of the cavity was collected by a compact CCD spectrometer (HR 2000). The cavity mirror reflectivity over the wavelength range of 472.3-479.3 nm was determined from the absorption of O2-O2 collisional pair. A series of concentrations of NO2 samples at high dilution were retrieved using differential spectral fitting techniques, with statistical uncertainties approaching 3.1 ppb (ng x mL(-1)) for a 80 s averaging period.
基于高功率发光二极管(LED)开发了高灵敏度非相干宽带腔增强吸收光谱技术。通过测量472.3 - 479.3 nm波长范围内二氧化氮(NO₂)的吸收来证明检测灵敏度。一束宽带非相干光(由峰值波长为457 nm的高功率LED发出)被耦合到一个长92.5 cm的高精细光学腔中,该光学腔由两个直径30 mm的平凹镜(曲率半径为1.0 m)组成,反射率为0.997(由制造商提供)。从腔中泄漏出的光由一台紧凑型电荷耦合器件(CCD)光谱仪(HR 2000)收集。利用氧气 - 氧气碰撞对的吸收来确定472.3 - 479.3 nm波长范围内腔镜的反射率。使用差分光谱拟合技术反演了一系列高稀释度的NO₂样品浓度,在80 s平均时间内统计不确定度接近3.1 ppb(纳克×毫升⁻¹)。