The methodology of the hyperspherical coordinate approach to triatomic reactions is presented, special emphasis being given to the extension of the hyperquantization algorithm in the symmetric parametrization to the general case of nonzero total angular momentum. The discrete analogs of hyperspherical harmonics, i.e. functions orthonormal on a lattice of points covering the interaction region, are used as basis sets to compute the adiabatic hyperspherical states parametrically dependent on the hyperradius which serve as effective potentials for reactive scattering. The relevant aspects of the method are that no integrals have to be calculated and the Hamiltonian matrix is sparse and can be evaluated analytically, using angular momentum coupling theory. A survey of numerical results and extensions is given. (C) 2001 by Academic Press.

The A plus BC reaction by the hyperquantization algorithm: the symmetric hyperspherical parametrization for J > 0

De Fazio D;
2001

Abstract

The methodology of the hyperspherical coordinate approach to triatomic reactions is presented, special emphasis being given to the extension of the hyperquantization algorithm in the symmetric parametrization to the general case of nonzero total angular momentum. The discrete analogs of hyperspherical harmonics, i.e. functions orthonormal on a lattice of points covering the interaction region, are used as basis sets to compute the adiabatic hyperspherical states parametrically dependent on the hyperradius which serve as effective potentials for reactive scattering. The relevant aspects of the method are that no integrals have to be calculated and the Hamiltonian matrix is sparse and can be evaluated analytically, using angular momentum coupling theory. A survey of numerical results and extensions is given. (C) 2001 by Academic Press.
2001
Istituto di Nanotecnologia - NANOTEC
INTEGRAL CROSS-SECTIONS; LOG-DERIVATIVE METHOD; QUANTUM DYNAMICS; KINEMATIC ROTATIONS; TRIATOMIC SYSTEMS
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/181367
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