We present a variational calculation of the first comprehensive T = 300 K rovibrational line list for thioformaldehyde, H<sub>2</sub>CS. It covers 41 809 rovibrational levels for states up to J <sub>max</sub> = 30 with vibrational band origins up to 5000 cm<sup>−1</sup> and provides the energies and line intensities for 547 926 transitions from the ground vibrational state to these levels. It is based on our previously reported accurate ab initio potential energy surface and a newly calculated ab initio dipole moment surface. Minor empirical adjustments are made to the ab initio equilibrium geometry to reduce systematic errors in the predicted intra-band rotational energy levels. The rovibrational energy levels and transition intensities ar...
We describe a simple way of obtaining numerically the manifold of energies for ro-vibrational transi...
$^{1}$D. R. Johnson and F. X. Powell. This meeting September 1970.Author Institution: National Resea...
Author Institution: Department of Physics and Astronomy, University College London, London, WC1E 6BT...
Author Institution: I. Physikalisches Institut, Universitat zu Koln, 50937 Koln, Germany; Department...
Author Institution: Optical Technology Division, NIST Gaithersburg, MD 20899, USA; Laboratoire Inter...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210, USA; I. Ph...
Results are presented for highly accurate ab initio variational calculation of the rotation–vibratio...
Rovibrational energy levels, transition frequencies, and linestrengths are computed variationally fo...
Author Institution: Department of Chemistry, Brock University; McMaster University, Brock University...
Special treatment is required for ro-vibrational calculations involving polyatomic molecules of line...
ii This work extends the knowledge about the excited electronic states of thioformaldehyde. Survey w...
Author Institution: Department of Chemistry, University of RochesterMolecular beams of thioformaldeh...
In a previous publication [I. D. Petsalakis, G. Theodorakopoulos, J. S. Wright, and I. P. Hamilton, ...
We report the results of variational calculations of the rovibrational energy levels of HCN for J = ...
Vibrational energy levels of H2CO are reported using variational nuclear motion calculations from ne...
We describe a simple way of obtaining numerically the manifold of energies for ro-vibrational transi...
$^{1}$D. R. Johnson and F. X. Powell. This meeting September 1970.Author Institution: National Resea...
Author Institution: Department of Physics and Astronomy, University College London, London, WC1E 6BT...
Author Institution: I. Physikalisches Institut, Universitat zu Koln, 50937 Koln, Germany; Department...
Author Institution: Optical Technology Division, NIST Gaithersburg, MD 20899, USA; Laboratoire Inter...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210, USA; I. Ph...
Results are presented for highly accurate ab initio variational calculation of the rotation–vibratio...
Rovibrational energy levels, transition frequencies, and linestrengths are computed variationally fo...
Author Institution: Department of Chemistry, Brock University; McMaster University, Brock University...
Special treatment is required for ro-vibrational calculations involving polyatomic molecules of line...
ii This work extends the knowledge about the excited electronic states of thioformaldehyde. Survey w...
Author Institution: Department of Chemistry, University of RochesterMolecular beams of thioformaldeh...
In a previous publication [I. D. Petsalakis, G. Theodorakopoulos, J. S. Wright, and I. P. Hamilton, ...
We report the results of variational calculations of the rovibrational energy levels of HCN for J = ...
Vibrational energy levels of H2CO are reported using variational nuclear motion calculations from ne...
We describe a simple way of obtaining numerically the manifold of energies for ro-vibrational transi...
$^{1}$D. R. Johnson and F. X. Powell. This meeting September 1970.Author Institution: National Resea...
Author Institution: Department of Physics and Astronomy, University College London, London, WC1E 6BT...