J. Castillo-chara et al., Differentiation of the ground vibrational and global minimum structures inthe Ar : HBr intermolecular complex, J CHEM PHYS, 115(2), 2001, pp. 899-911
A fully three-dimensional morphed potential energy surface is reported for
Ar:HBr. The morphed potential was obtained from parametrized scaling and sh
ifting transformations of an ab initio potential. The optimum parameters of
the morphed potential were determined by a regularized nonlinear least-squ
ares fit to available experimental data. The rovibrational dynamics of the
complex were computed using an adiabatic separation of the H-Br intramolecu
lar stretching mode from the intermolecular modes of the system. The ground
rovibrational state of the morphed potential was found to have the hydroge
n-bound structure Ar-HBr. This state was 10.99 cm(-1) more stable than the
corresponding state having the van der Waals structure, Ar-BrH, in agreemen
t with experimental data. However, the global minimum of the morphed potent
ial was found to have the van der Waals structure, Ar-BrH. This structure w
as 20.9 cm(-1) lower in energy than the local minimum having the hydrogen-b
ound structure, Ar-HBr. (C) 2001 American Institute of Physics.