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Sign reversal of the spin-orbit constant for the C³Πᵤ state of N₂

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Authors

Ndome, H.
Hochlaf, M.
Lewis, B. R.
Heays, Alan
Gibson, S. T.
Lefebvre-Brion, H.

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American Institute of Physics (AIP)

Abstract

Ab initio calculations are performed at the multireference configuration-interaction level of theory on the diagonal spin-orbit functions for the lowest non-Rydberg states of ³Πᵤ symmetry in molecular nitrogen. Spin-orbit constants deduced from the ab initio results confirm the recent suggestion, based on new experimental results, that the C³Πᵤ state of N₂, long known to be regular in the region of its potential-energy curve minimum, becomes inverted at higher energies. By removing the effects of the crossing C′ ³Πᵤ state, it is shown that Av for the C state changes sign from positive to negative near v=8, corresponding to a change in principal molecular-orbital configuration from (1σg)²(1σu)²(2σg)²(2σu)(3σg)²(1πu)⁴(1πg) to (1σg)²(1σu)²(2σg)²(2σu)²(3σg)(1πu)³(1πg)² at an internuclear distance near 1.4 Å.

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The Journal of Chemical Physics

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