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连续波光腔衰荡光谱法测量水在750纳米附近的吸收光谱:对水二聚体吸收研究的贡献

The absorption spectrum of water near 750 nm by CW-CRDS: contribution to the search of water dimer absorption.

作者信息

Kassi Samir, Macko Peter, Naumenko Olga, Campargue Alain

机构信息

Laboratoire de Spectrométrie Physique (associated with CNRS, UMR 5588), Université Joseph Fourier de Grenoble, B.P. 87, 38402, Saint-Martin-d'Hères Cedex, France.

出版信息

Phys Chem Chem Phys. 2005 Jun 21;7(12):2460-7. doi: 10.1039/b502172c. Epub 2005 May 24.

Abstract

The absorption spectrum of natural water vapour around 750 nm has been recorded with a typical sensitivity of 3 x 10(-10) cm(-1) using a cw cavity ring down spectroscopy set up based on a Ti:sapphire laser. The 13 312.4-13 377.7 cm(-1) spectral interval was chosen as it corresponds to the region where water dimer absorption was recently measured (K. Pfeisticker et al., Science, 2003, 300, 2078-2080). The line parameters (wavenumber and intensity) of a total of 286 lines of water vapor were measured by a one by one fit of the lines to a Voigt profile. For the main water isotopologue, 276 lines were measured with line intensities as weak as 5 x 10(-29) cm molecule(-1)i.e. about 50 times smaller than the weakest H(2)16O line intensities included in the 2004 edition of the HITRAN database. On the basis of the predictions of Schwenke and Partridge, all but 16 lines could be assigned to different isotopologues of water (H(2)16O, H(2)18O, and HD16O) present in natural abundance in the sample. A total of 272 energy levels of H(2)16O were determined and rovibrationally assigned to 18 upper vibrational states. Half of them had not been reported previously. The importance of the additional absorbance resulting from the observation of many new weak lines is discussed in relation to the detection of water dimer absorption and compared to the absorbance predicted by Schwenke and Partridge. The quality of the line parameters of water monomer is shown to be of crucial importance to identify the absorbance of the water dimer in the considered region.

摘要

利用基于钛宝石激光器的连续波腔衰荡光谱装置,记录了天然水蒸气在750纳米附近的吸收光谱,典型灵敏度为3×10⁻¹⁰厘米⁻¹。选择13312.4 - 13377.7厘米⁻¹的光谱区间,因为它对应于最近测量水二聚体吸收的区域(K. Pfeisticker等人,《科学》,2003年,300卷,2078 - 2080页)。通过将水蒸气的总共286条谱线逐一拟合到洛伦兹轮廓,测量了这些谱线的参数(波数和强度)。对于主要的水同位素分子,测量了276条谱线,其谱线强度低至5×10⁻²⁹厘米·分子⁻¹,即比2004年版HITRAN数据库中包含的最弱的H₂¹⁶O谱线强度小约50倍。根据施温克和帕特里奇的预测,除16条谱线外,所有谱线都可归属于样品中天然丰度存在的水的不同同位素分子(H₂¹⁶O、H₂¹⁸O和HD¹⁶O)。确定了H₂¹⁶O的总共272个能级,并将其振转归属到18个较高的振动状态。其中一半此前未曾报道过。讨论了因观测到许多新的弱谱线而产生的额外吸光度对于检测水二聚体吸收的重要性,并与施温克和帕特里奇预测的吸光度进行了比较。结果表明,水单体谱线参数的质量对于识别所考虑区域内水二聚体的吸光度至关重要。

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