Vibrational levels for the lowest-lying triplet and singlet states of CH2 and NH2+

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Abstract

The 30 lowest vibrational energy levels are calculated for the X̃3B1 and ã1A1 states of CH2 and NH2+ for various potential energy surfaces. We include a new surface for the NH2+ triplet state, with predicted fundamentals v1=3059, v2=845, and v3=3360 (expt 3359.9) cm-1. Where possible, results are compared with vibrational levels calculated using two other methods and with experiment. At low energy, the differences between the calculated vibrational levels are due primarily to the choice of potential energy surface. Of secondary importance is the method used to calculate the vibrational energy levels. The differences resulting from the method used are most apparent for cases with a diffuse vibrational wave function or for cases where the bond distance along the minimum energy path depends strongly on the bending angle. © 1993 American Institute of Physics.

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Barclay, V. J., Hamilton, I. P., & Jensen, P. (1993). Vibrational levels for the lowest-lying triplet and singlet states of CH2 and NH2+. The Journal of Chemical Physics, 99(12), 9709–9719. https://doi.org/10.1063/1.465453

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