Rq. Chen et al., Six-dimensional quantum calculations of highly excited vibrational energy levels of hydrogen peroxide and its deuterated isotopomers, J CHEM PHYS, 114(11), 2001, pp. 4763-4774
We report accurate calculations of vibrational energy levels of HOOH, DOOD,
and HOOD up to 10 000 cm(-1) above the zero-point energy levels on a high-
quality ab initio potential energy surface. These energies were determined
by the Lanczos algorithm based on repetitive matrix-vector multiplication.
The six-dimensional vibrational Hamiltonian in the diatom-diatom Jacobi coo
rdinate system was discretized in a mixed basis/grid representation. A dire
ct product potential optimized discrete variable representation was used fo
r the radial coordinates, while nondirect product spherical harmonics were
employed for the angular degrees of freedom. The calculation and storage of
the potential matrix in the angular finite basis representation were avoid
ed by using a series of one-dimensional pseudo-spectral transformations to
a direct product angular coordinate grid. The diatom-diatom exchange symmet
ry, when applicable, was incorporated into the basis, which significantly e
nhanced the efficiency for symmetric isotopomers. A few hundred low-lying v
ibrational levels of each isotopomer were assigned and compared with experi
mental data. (C) 2001 American Institute of Physics.