首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >The absorption spectrum of water vapor in the 1.25 mu m atmospheric window (7911-8337 cm(-1))
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The absorption spectrum of water vapor in the 1.25 mu m atmospheric window (7911-8337 cm(-1))

机译:1.25微米大气窗(7911-8337 cm(-1))中水蒸气的吸收光谱

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The absorption spectrum of water vapor in "natural" isotopic abundance has been recorded at room temperature by high sensitivity Continuous Wave Cavity Ring Down Spectroscopy (CW-CRDS) between 7911 and 8337 cm(-1). The investigated region covers most of the 1.25 mu m transparency window of importance for atmospheric applications. The recordings were performed with sensitivity on the order of alpha(min)similar to 2 x 10(-11) cm(-1), more than two orders of magnitude better than previous investigations by Fourier Transform Spectroscopy (FTS). Measured line intensities cover a range of seven orders of magnitude (3 x 10(-30)-2 x 10(-23) cm/molecule at room temperature). The experimental line list provided as Supplementary Material includes more than 5000 transitions. As a result of the achieved sensitivity, more than 1150 lines of the experimental list were identified as being due to ammonia present as an impurity at the 5 ppm concentration level in the water sample. Although incomplete, the obtained ammonia line list seems to be the first one in the region. More than 3193 water lines were assigned to 3560 transitions of five water isotopologues ((H2O)-O-16, (H2O)-O-18, (H2O)-O-17, (HDO)-O-16 and (HDO)-O-18). The assignments were performed using known experimental energy levels and calculated spectra based on variational calculations by Schwenke and Partridge. The obtained results are compared to the most relevant previous studies by Fourier Transform Spectroscopy in the region and to the exhaustive review of rovibrational line positions and levels performed recently by an IUPAC sponsored task group. Two-hundred and sixty-six levels are newly determined and 46 are corrected by more than 0.015 cm(-1) compared to those recommended by the water IUPAC task group. The overall agreement between variational and measured intensities is satisfactory.
机译:通过在7911至8337 cm(-1)之间的高灵敏度连续波腔衰荡光谱(CW-CRDS),已在室温下记录了“天然”同位素丰度中水蒸气的吸收光谱。被调查的区域覆盖了对大气应用重要的1.25微米透明窗口的大部分。进行记录时,灵敏度约为2(10)(-11)cm(-1)的alpha(min),比以前的傅立叶变换光谱(FTS)研究要好两个数量级。测得的线强度覆盖七个数量级的范围(室温下为3 x 10(-30)-2 x 10(-23)cm /分子)。作为补充材料提供的实验行列表包括5000多个过渡。作为获得的灵敏度的结果,实验列表中超过1150行被确定为归因于氨在水样品中的浓度为5 ppm时作为杂质存在。尽管不完整,但获得的氨水清单似乎是该地区的第一清单。超过3193条输水管线被分配给5种水同位素(3 H2O-O-16,(H2O)-O-18,(H2O)-O-17,(HDO)-O-16和(HDO) -O-18)。使用已知的实验能级和基于Schwenke和Partridge的变分计算得出的光谱来执行分配。将获得的结果与该地区最相关的先前研究(通过傅立叶变换光谱法)进行比较,并与IUPAC赞助的任务组最近对旋转振动线的位置和水平进行详尽的回顾。与水IUPAC任务组推荐的水位相比,新确定了266个水位,并通过0.015 cm(-1)以上的距离校正了46个水位。变化强度和测量强度之间的总体一致性令人满意。

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