The recently developed method of continuous quantization is applied to the atom-Morse oscillator collinear collision problem. This geometrical formulation of the classical scattering process allows for the extraction of transition probabilities for classically forbidden processes with reasonable accuracy. The accuracy of this method over the simple (histogram) quasi-classical procedure is demonstrated for two-model systems
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...
We present a systematic treatment of scattering processes for quantum systems whose time evolution i...
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...
A simple improvement of the quasiclassical histogram approximation in molecular scattering is presen...
A method of analysing classical trajectory data, based on recently derived scaling principles, is ap...
The statistical quasiclassical method is applied to the hard-sphere collision of an atom with a harm...
We present a set of coupled Schrödinger-Hamiltonian equations that may be solved to give self-consis...
The results of a quasiclassical investigation of the scattering process for a colinear collision bet...
A unified description of classical and quantal scattering is presented. This description is unified ...
By introducing an impulse potential at an external boundary, or by reflecting the scattering potenti...
A general single-center close-coupling approach based on a continuum-discretization procedure is dev...
The vibrational transition probability expressions for the forced Morse oscillator have been derived...
Semiclassical approximations, simple as well as rigorous, are formulated in order to be able to desc...
A quasiclassical approximation to quantum mechanical scattering in the Moller formalism is developed...
A new semi-classical method, the so-called uniform semiclassical approximation, is described briefly...
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...
We present a systematic treatment of scattering processes for quantum systems whose time evolution i...
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...
A simple improvement of the quasiclassical histogram approximation in molecular scattering is presen...
A method of analysing classical trajectory data, based on recently derived scaling principles, is ap...
The statistical quasiclassical method is applied to the hard-sphere collision of an atom with a harm...
We present a set of coupled Schrödinger-Hamiltonian equations that may be solved to give self-consis...
The results of a quasiclassical investigation of the scattering process for a colinear collision bet...
A unified description of classical and quantal scattering is presented. This description is unified ...
By introducing an impulse potential at an external boundary, or by reflecting the scattering potenti...
A general single-center close-coupling approach based on a continuum-discretization procedure is dev...
The vibrational transition probability expressions for the forced Morse oscillator have been derived...
Semiclassical approximations, simple as well as rigorous, are formulated in order to be able to desc...
A quasiclassical approximation to quantum mechanical scattering in the Moller formalism is developed...
A new semi-classical method, the so-called uniform semiclassical approximation, is described briefly...
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...
We present a systematic treatment of scattering processes for quantum systems whose time evolution i...
Computational modelling of potential and resonant scattering for short range and Coulomb potentials ...