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Full-dimensional vibrational calculations for H5O2+ using an ab initio potential energy surface
Authors:McCoy Anne B  Huang Xinchuan  Carter Stuart  Landeweer Marc Y  Bowman Joel M
Institution:Department of Chemistry, The Ohio State University, Columbus, Ohio 43210, USA. mccoy@chemistry.ohio-state.edu
Abstract:We report quantum diffusion Monte Carlo (DMC) and variational calculations in full dimensionality for selected vibrational states of H(5)O(2) (+) using a new ab initio potential energy surface X. Huang, B. Braams, and J. M. Bowman, J. Chem. Phys. 122, 044308 (2005)]. The energy and properties of the zero-point state are focused on in the rigorous DMC calculations. OH-stretch fundamentals are also calculated using "fixed-node" DMC calculations and variationally using two versions of the code MULTIMODE. These results are compared with infrared multiphoton dissociation measurements of Yeh et al. L. I. Yeh, M. Okumura, J. D. Myers, J. M. Price, and Y. T. Lee, J. Chem. Phys. 91, 7319 (1989)]. Some preliminary results for the energies of several modes of the shared hydrogen are also reported.
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