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Analysis of the molecular bands of D2H and H2D at 5600 Å (CROSBI ID 77171)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Azinović, Davorka ; Figger, Hartmut Analysis of the molecular bands of D2H and H2D at 5600 Å // Zeitschrift für Physik. D, Atoms, molecules and clusters, 42 (1997), 2; 105-112. doi: 10.1007/s004600050341

Podaci o odgovornosti

Azinović, Davorka ; Figger, Hartmut

engleski

Analysis of the molecular bands of D2H and H2D at 5600 Å

Spectral simulation was used to analyze the molecular rovibrational bands of D2H and H2D at 5600 Angstrom. These bands were previously measured by the ion beam neutralization method. They were assigned to the electronic 3p(2)B(1) -2s(2)A(1) and vibrational (v - v '') = (0, 0, 0, - 0, 0, 0) tran sitions. Least squares fits to the experimental line-positions were made to determine the asymmetric rotator constants A, B and C for the 2s(2)A(1) and 3p(2)B(1) v = 0 states of D2H and H2D, hitherto unknown. Lorentz line-profiles were assumed for the D2H and H2D rotational lines, whose widths are mainly governed by the lifetimes of the lower states. The bands at 5600 Angstrom were simulated and the 2s(2)A(1) state lifetimes were estimated to be sigma greater than or equal to 0.5 +/- 0.2 ps for D2H and sigma greater than or equal to 0.4 +/- 0.2 ps for H2D. Vibrational constants of D-3 and D2H in the 2s(2)A(1) states are determined from the positions of the 0-0 and 0-1 vibrational bands given in respective experimental spectra previously measured. For the first time the vibrational constants omega(1) and omega(2) of the 2s(2)A(1) state of H2D were estimated from the positions of the 0-0 and 0-1 band maxima. These vibrational constants are compared with the corresponding vibrational constants of their ions.

molecular spectroscopy ; H3 molecule ; molecular bands

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Podaci o izdanju

42 (2)

1997.

105-112

objavljeno

0178-7683

10.1007/s004600050341

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Fizika

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