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2150至4260厘米-1之间硫化氢的吸收光谱:对第一(2ν2、ν1和ν3)和第二(3ν2、ν1 + ν2和ν2 + ν3)三重态区域的位置和强度分析

The Absorption Spectrum of H2S Between 2150 and 4260 cm-1: Analysis of the Positions and Intensities in the First (2nu2, nu1, and nu3) and Second (3nu2, nu1 + nu2, and nu2 + nu3) Triad Regions.

作者信息

Brown LR, Crisp JA, Crisp D, Naumenko OV, Smirnov MA, Sinitsa LN, Perrin A

机构信息

Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Drive, Pasadena, California, 91109

出版信息

J Mol Spectrosc. 1998 Apr;188(2):148-74. doi: 10.1006/jmsp.1997.7501.

Abstract

The two triad systems of hydrogen sulfide (2nu2, nu1, and nu3 near 4 µm and 3nu2, nu1 + nu2, and nu2 + nu3 near 2.7 µm) were analyzed using 14 spectra recorded at 0.0056 and 0.011 cm-1 resolution with the McMath Fourier transform spectrometer located at Kitt Peak National Observatory. Experimental upper state levels of H232S, H234S, and H233S were obtained from assigned positions (as high as J = 20 and Ka = 15 for the main isotope). These were fitted to the A-reduced Watson Hamiltonian to determine precise sets of rotational constants through J10 and up to nine Fermi and Coriolis coupling parameters. Intensities of the two H232S triads were modeled with rms values of 2.5%, using the transformed transition moment expansion with 19 terms for 568 intensities of the first triad and 11 terms for the 526 intensities of the second triad. The second derivatives of the dipole moment with respect to normal coordinates were estimated in Debye to be: 22µx = -0.004873 (90); 12µx = 0.01372 (30); and 23µz = 0.01578 (30). This confirmed that for hydrogen sulfide some of the second derivatives are larger than the first derivatives. The calculated line intensities were summed yielding integrated band strengths (in cm-2/atm at 296 K) as follows: 0.3315 for 2nu2, 0.4522 for nu1, 0.1201 for nu3, 0.0303 for 3nu2, 1.820 for nu1 + nu2, and 2.869 for nu2 + nu3. In addition, the hot band transitions were identified in both regions. Finally, a composite database of hydrogen sulfide line parameters was predicted for the 5- to 2.5-µm region. Copyright 1998 Academic Press.

摘要

利用位于基特峰国家天文台的麦克马思傅里叶变换光谱仪,在0.0056和0.011厘米-1分辨率下记录的14个光谱,对硫化氢的两个三重态系统(4微米附近的2ν2、ν1和ν3以及2.7微米附近的3ν2、ν1 + ν2和ν2 + ν3)进行了分析。从指定位置获得了H232S、H234S和H233S的实验上能级(主同位素高达J = 20和Ka = 15)。将这些数据拟合到A简化的沃森哈密顿量中,以确定通过J10以及多达九个费米和科里奥利耦合参数的精确转动常数集。使用变换后的跃迁矩展开式,对两个H232S三重态的强度进行建模,均方根值为2.5%,第一个三重态的568个强度用19项,第二个三重态的526个强度用11项。偶极矩相对于正常坐标的二阶导数估计值(德拜单位)为:22µx = -0.004873 (90);12µx = 0.01372 (30);23µz = 0.01578 (30)。这证实了对于硫化氢,一些二阶导数大于一阶导数。计算得到的谱线强度相加得到积分带强度(296 K时单位为厘米-2/大气压)如下:2ν2为0.3315,ν1为0.4522,ν3为0.1201,3ν2为0.0303,ν1 + ν2为1.820,ν2 + ν3为2.869。此外,在两个区域都识别出了热带跃迁。最后,预测了5至2.5微米区域硫化氢谱线参数的综合数据库。版权所有1998年学术出版社。

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