English

A global \textit{ab initio} dipole moment surface for methyl chloride

Chemical Physics 2018-08-21 v1

Abstract

A new dipole moment surface (DMS) for methyl chloride has been generated at the CCSD(T)/aug-cc-pVQZ(+d for Cl) level of theory. To represent the DMS, a symmetry-adapted analytic representation in terms of nine vibrational coordinates has been developed and implemented. Variational calculations of the infrared spectrum of CH3_3Cl show good agreement with a range of experimental results. This includes vibrational transition moments, absolute line intensities of the ν1\nu_1, ν4\nu_4, ν5\nu_5 and 3ν63\nu_6 bands, and a rotation-vibration line list for both CH335_{3}{}^{35}Cl and CH337_{3}{}^{37}Cl including states up to J=85J=85 and vibrational band origins up to 44004400{\,}cm1^{-1}. Across the spectrum band shape and structure are well reproduced and computed absolute line intensities are comparable with highly accurate experimental measurements for certain fundamental bands. We thus recommend the DMS for future use.

Cite

@article{arxiv.1808.05431,
  title  = {A global \textit{ab initio} dipole moment surface for methyl chloride},
  author = {Alec Owens and Sergei N. Yurchenko and Andrey Yachmenev and Jonathan Tennyson and Walter Thiel},
  journal= {arXiv preprint arXiv:1808.05431},
  year   = {2018}
}
R2 v1 2026-06-23T03:35:39.108Z