Communication: Tunnelling splitting in the phosphine molecule

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Abstract

Splitting due to tunnelling via the potential energy barrier has played a significant role in the study of molecular spectra since the early days of spectroscopy. The observation of the ammonia doublet led to attempts to find a phosphine analogous, but these have so far failed due to its considerably higher barrier. Full dimensional, variational nuclear motion calculations are used to predict splittings as a function of excitation energy. Simulated spectra suggest that such splittings should be observable in the near infrared via overtones of the ν2 bending mode starting with 4ν2.

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Sousa-Silva, C., Tennyson, J., & Yurchenko, S. N. (2016). Communication: Tunnelling splitting in the phosphine molecule. Journal of Chemical Physics, 145(9). https://doi.org/10.1063/1.4962259

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