Computing Vibration–Rotation-Tunnelling Levels of HOD Dimer

Loading...
Thumbnail Image

Authors

Wang, Xiao-Gang
Carrington, Tucker Jr

Date

2017

Type

preprint

Language

en

Keyword

HOD Dimer , Tunnelling

Research Projects

Organizational Units

Journal Issue

Alternative Title

Abstract

Using an accurate 6D water dimer potential energy surface, we compute vibration-rotation tunnelling levels of HOD dimer, by assuming that the two monomers are rigid. HOD dimer has two isomers, a D-bonded isomer and an H-bonded isomer, and the wavefunctions of both isomers have amplitude in four wells. HOD dimer is important because, unlike the case of H2O dimer or D2O dimer, it is possible to measure the largest tunnelling splitting. Results for HOD dimer, therefore facilitate the testing of H2O dimer potentials. In J. Chem. Phys. 102, 1114 (1995), experimental results were interpreted in terms of 1D models. Experimental splittings of both isomers, obtained by fitting an energy level equation to spectra, are in good agreement with those we compute.

Description

Citation

Publisher

License

Journal

Volume

Issue

PubMed ID

ISSN

EISSN