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首页> 外文期刊>Applied optics >DETECTION OF NO AND NO2 BY (2+2) RESONANCE-ENHANCED MULTIPHOTON IONIZATION AND PHOTOACOUSTIC SPECTROSCOPY NEAR 454 NM
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DETECTION OF NO AND NO2 BY (2+2) RESONANCE-ENHANCED MULTIPHOTON IONIZATION AND PHOTOACOUSTIC SPECTROSCOPY NEAR 454 NM

机译:(2 + 2)共振多光子电离和光声光谱法检测NO和NO2

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摘要

Trace concentrations of NO and NO2 are detected with a dye laser operating near 454 nm. NO is detected by a (2 + 2) resonance-enhanced multiphoton ionization process by means of NO A (2) Sigma(+)-X (II)-I-2(0, 0) transitions with miniature electrodes, and NO2 is detected by a one-photon absorption photoacoustic process by means of NO2 (A) over tilde' B-2(1)(0, 8, 0)- (X) over tilde (2)A(1)(0, 0, 0) transitions with a miniature microphone. Rotationally resolved excitation spectra show that the spectral resolution is sufficiently high to identify these species at 1 atm. The technique's analytical merits are evaluated as functions of concentration, pressure, and laser intensities. Low laser intensities favor NO2 photoacoustic detection whereas high laser intensities favor NO ionization. Limits of detection (signal-to-noise ratio 3) of 160 parts in 10(9) for NO and 400 parts in 10(9) for NO2 are determined at 1 atm for a 10-s integration time. Signal response and noise analyses show that three decades of NO/NO2 mixtures can be measured with a computational relative error in concentration that is three times the relative error in measuring the NO and NO2 signals. (C) 1996 Optical Society of America [References: 24]
机译:用在454 nm附近工作的染料激光检测痕量的NO和NO2浓度。 NO通过(2 + 2)共振增强型多光子电离过程通过NO A(2)带有微型电极的Sigma(+)-X(II)-I-2(0,0)跃迁检测到,NO2为通过单光子吸收光声过程通过波浪号'B-2(1)(0,8,0)-(X)上的波浪号(2)A(1)(0,0, 0)用微型麦克风过渡。旋转解析的激发光谱表明,光谱分辨率足够高,可以在1个大气压下识别出这些物质。该技术的分析优点可根据浓度,压力和激光强度进行评估。低激光强度有利于NO2光声检测,而高激光强度有利于NO电离。在1大气压下确定10(9)中NO的160份和NO2在10(9)中的400份的检出限(信噪比3),积分时间为10秒。信号响应和噪声分析表明,可以测量浓度达到计算相对误差的三十年的NO / NO2混合物,该相对误差是测量NO和NO2信号的相对误差的三倍。 (C)1996年美国眼镜学会[参考文献:24]

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