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首页> 外文期刊>Canadian Journal of Physics >Fourier transform and multiplexed intrapulse quantum cascade laser spectrometer measurements of NO_2 and its dimer N_2O_4~1
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Fourier transform and multiplexed intrapulse quantum cascade laser spectrometer measurements of NO_2 and its dimer N_2O_4~1

机译:NO_2及其二聚体N_2O_4〜1的傅里叶变换和多脉冲内量子级联激光光谱仪的测量

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摘要

A quantitative comparison has been made between the spectra recorded using an infrared Fourier transform (FT) spectrometer, and those based upon the use of chirped pulse quantum cascade (QC) lasers. The system chosen for this comparison is the chemical equilibrium between NO_2 and its dimer N_2O_4. It is studied by making spectroscopic measurements of the dimerization of nitrogen dioxide (NO_2). The intrapulse QC laser spectrometer used long duration pulses of wavelengths near 7.84,7.46,and 6.14 μm, and a path length of 62 m, and the Université libre de Bruxelles (Brussels, Belgium) FTspectrometer used a path length of 21.1 cm. In the direct comparison of pairs of spectral regions allowed by the dual pulse system, it was possible to compare the 7.84 μm region, where both the spectra of the monomer and dimer are observed, with the 7.46 and 6.14 pm regions in which only monomer lines are detected. In the 7.84 μm region the NO_2 absorption lines could be detected only when the dimer N_2O_4 is formed in the monomer NO_2 in the QC laser spectra.
机译:在使用红外傅立叶变换(FT)光谱仪记录的光谱与基于of脉冲量子级联(QC)激光器的光谱之间进行了定量比较。选择用于该比较的系统是NO_2及其二聚体N_2O_4之间的化学平衡。通过对二氧化氮(NO_2)的二聚化进行光谱测量来进行研究。脉冲内QC激光光谱仪使用波长为7.84、7.46和6.14μm的长脉冲,光程为62 m,比利时布鲁塞尔自由大学(Universitélibre de Bruxelles)FT光谱仪使用的光程为21.1 cm。在直接比较双脉冲系统允许的成对光谱区域时,可以将观察到单体和二聚体光谱的7.84μm区域与仅单体线的7.46和6.14 pm区域进行比较。被检测到。在7.84μm区域,仅当QC激光光谱中的单体NO_2中形成二聚体N_2O_4时,才能检测到NO_2吸收线。

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