Issue 11, 1988

Ab initio HeF+(3∑, 3Π) interaction potentials and calculations of the mobility of F+(3P) and F(1S) in helium

Abstract

The mobility of F+(3P) in helium has been calculated using both the two-temperature and three-temperature theories of ion transport. The interaction potentials for the two possible molecular states HeF+(3∑) and HeF+(3Π) required by the transport theories were calculated at the MP4SDQ/6–311 + G(3df, 3dp) level of theory. The mobility of F+ in helium derived by summing over the appropriate statistical weights for the two molecular ion states separating to He(1S)+ F+(3P) is in good agreement with experimental data. The mobility of the F(1S) ion in helium has been calculated at the three-temperature level of theory using an interaction potential calculated at the MP4SDQ/6–311 + G (3df, 3dp) level of theory and refined by fitting to low-field experimental mobility measurements. The mobilities calculated with this potential were found to be in good accored with the values calculated using an HeF(1∑) MBPT(4) interaction potential incorporating a very large basis set.

Article information

Article type
Paper

J. Chem. Soc., Faraday Trans. 2, 1988,84, 1847-1853

Ab initio HeF+(3∑, 3Π) interaction potentials and calculations of the mobility of F+(3P) and F(1S) in helium

P. W. Harland, R. G. A. R. Maclagan and R. W. Simpson, J. Chem. Soc., Faraday Trans. 2, 1988, 84, 1847 DOI: 10.1039/F29888401847

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