A GENERALIZED INTERNAL AXIS METHOD FOR HIGH BARRIER TUNNELING PROBLEMS, AS APPLIED TO THE WATER DIMER
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Abstract
When more than one large amplitude vibrational motion is present in a molecule, it is often not possible to define a global internal-axis-method (IAM) coordinate system and set of basis functions. In the present work, a method is presented for extending the IAM treatment to tunneling problems in such cases, and is illustrated using a model for the water dimer with three large amplitude vibrational coordinates. The method involves the construction of two different sets of local IAM-like coordinate systems. The first of these contains n coordinate systems, one for the small neighborhood surrounding each of the n equilibrium frameworks. The second contains of the order of
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Author Institution: Molecular Spectroscopy Division, National Bureau of Standards