New simultaneous fit of 12CD4 transitions in the 0–2400 cm−1 region

2017 ◽  
Vol 95 (4) ◽  
pp. 412-422 ◽  
Author(s):  
Okkacha Ouardi ◽  
Mohamed Meskine ◽  
Abdelkrim Karrour

We report the global analysis of 12CD4 line positions from high-resolution rovibrational spectra, including accurate lines in the region 0–2400 cm−1. In addition to the lines of P0–P0 and P1–P1 (where P0 is the ground state (GS), and P1 is the dyad (ν2, ν4)), this region covers two cold polyads: P1 (900–1220 cm−1, two vibrational levels, two sublevels) and the pentad (2ν4, ν2 + ν4, ν1, 2ν2, ν3) or P2 (1850–2400 cm−1, five vibrational levels, nine sublevels). In this analysis, 2724 assignments from four sources are fitted using an effective Hamiltonian expanded up to the sixth order for the pentad. For the assignments and analysis, we use the SPVIEW and XTDS software programs that implement the tensorial formalism developed in the Dijon group for tetrahedral molecules. Among the 454 parameters of the effective Hamiltonian for the pentad (of which 10 are relative to the GS (or P0) and 72 are relative to the dyad), 233 were fitted (10 of which are GS and 37 of which are dyad). The 47 parameters for the dyad and the 233 parameters for the pentad allow very good simulations to be made. For this study, a total of 2724 line positions were used in the least squares adjustment characterized by the following global root mean square deviations dRMS for line positions: 0.01 × 10−4 cm−1 for P0–P0, 0.4 × 10−4 cm−1 for P1–P1, 1.3 × 10−4 cm−1 for the dyad, and 0.7 × 10−4 cm−1 for the pentad. XTDS and SPVIEW, which can simulate spectra, allowed us to verify and compare the calculated spectrum, to the experimental spectrum for the dyad and pentad regions of 12CD4 and to a spectrum obtained from variational calculation and from ab initio DMS (TheoReTS information system http://theorets.univ-reims.fr or http://theorets.tsu.ru ).

2020 ◽  
Vol 152 (20) ◽  
pp. 204311
Author(s):  
Xiao-Gang Wang ◽  
Tucker Carrington

2022 ◽  
Vol 130 (3) ◽  
pp. 345
Author(s):  
А.В. Кузнецов ◽  
Н.И. Распопова ◽  
О.В. Громова ◽  
Е.С. Бехтерева ◽  
М.А. Кошелев ◽  
...  

The high-resolution spectrum of the 72GeH4 molecule was recorded on a Bruker IFS 125HR Fourier spectrometer with an optical resolution of 0.003 cm-1. The line positions were analyzed for ten interacting vibrational-rotational bands 3ν4 (1F2, F1, 2F2), v2+ 2ν4 (1E, F1, F2, 2E) and 2ν2+v4 (1F2, F1, 2F2) in the range 2350-2750 cm-1. As a result of the analysis, 1726 experimental lines were identified with the maximum value of the quantum number Jmax = 17; then used in the fitting procedure with parameters of the effective Hamiltonian. The resulting set of 35 spectroscopic parameters describes the vibrational-rotational structure of the spectrum with drms = 7.5 · 10-4 cm-1.


1985 ◽  
Vol 63 (9) ◽  
pp. 1189-1194 ◽  
Author(s):  
H. Frunder ◽  
R. Angstl ◽  
D. Illig ◽  
H. W. Schrötter ◽  
L. Lechuga-Fossat ◽  
...  

The coherent anti-Stokes Raman spectroscopy (CARS) spectrum of the Q-branch of the ν1 band of natural H2S has been measured at a pressure of 1.3 kPa with continuous-wave excitation in the cavity of an argon-ion ring laser. For comparison with the experimental spectrum, Raman line positions and intensities were calculated from energy levels and wave functions that were previously obtained from the study of the pure rotation spectrum and the 2ν2, ν1, and ν3 bands by Fourier transform infrared spectroscopy. These Raman line positions and intensities formed the basis for the simulation of the theoretical CARS spectrum, which is in excellent agreement with the experimental one.


1988 ◽  
Vol 66 (7) ◽  
pp. 622-629 ◽  
Author(s):  
G. Pierre ◽  
G. Millot ◽  
A. Valentin ◽  
L. Henry ◽  
B. Foy ◽  
...  

The Fourier transform absorption spectrum of 13CD4 methane has been recorded from 924 to 1190 cm−1. The full width half maximum (3 × 10−3 cm−1) of the lines in the experimental spectrum is close to the Doppler–Fizeau width (2.7 × 10−3 cm−1) and the accuracy of the line frequency is better than 10−4 cm−1. The reduced effective Hamiltonian is formulated in terms of irreducible tensorial operators set in the Td group. With 1147 isolated infrared lines, we have determined 10 Hamiltonian parameters for the ground state up to sixth order and 30 parameters of the 0100 and 0001 vibrational states up to the fifth order of approximation. The standard deviation obtained is 10−4 cm−1.


1994 ◽  
Vol 72 (11-12) ◽  
pp. 1101-1108 ◽  
Author(s):  
K. Yoshino ◽  
J. E. Murray ◽  
J. R. Esmond ◽  
Y. Sun ◽  
W. H. Parkinson ◽  
...  

Fourier transform spectroscopic measurements of the absorption bands of the Herzberg I system [Formula: see text] of O2, have been made in the wavelength region 240–270 nm. Rotational line positions are determined with an accuracy of 0.005 cm−1, and rotational term values are presented for the vibrational levels, ν = 4–11. Molecular constants of these levels are also presented. Interactions with the [Formula: see text] state are observed at J = 13 of the ν = 4 level, at J = 16 of the ν = 7 level, and at J = 15 and 24 of the ν = 9 level of the [Formula: see text] state. Another interaction around J = 10 of the ν = 11 level might result from the weakly bound 3Πu state.


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