An efficient and accurate mixed quantum/classical theory approach for computational treatment of inelastic scattering is extended to describe collision of an atom with a general asymmetric-top rotor polyatomic molecule. Quantum mechanics, employed to describe transitions between the internal states of the molecule, and classical mechanics, employed for description of scattering of the atom, are used in a self-consistent manner. Such calculations for rotational excitation of HCOOCH3 in collisions with He produce accurate results at scattering energies above 15 cm–1, although resonances near threshold, below 5 cm–1, cannot be reproduced. Importantly, the method remains computationally affordable at high scattering energies (here up to 1000 cm...
It is shown that the mixed quantum/classical theory (MQCT) for the description of molecular scatteri...
A mixed quantum/classical theory (MQCT) for the inelastic collision of two asymmetric-top rotor mole...
The details of energy transfer between colliding atoms and molecules is essential in order to unders...
An efficient and accurate mixed quantum/classical theory approach for computational treatment of ine...
A mixed quantum/classical approach to inelastic scattering (MQCT) is developed in which the relative...
For computational treatment of rotationally inelastic scattering of molecules, we propose to use the...
A computationally affordable methodology is developed to predict cross sections and rate coefficient...
A mixed quantum/classical theory (MQCT) for the inelastic collision of two asymmetric-top rotor mole...
The mixed quantum/classical theory (MQCT) for inelastic molecule-atom scattering developed recently ...
Theoretical foundation is laid out for description of permutation symmetry in the inelastic scatteri...
We formulated the mixed quantum/classical theory for rotationally and vibrationally inelastic scatte...
The mixed quantum classical theory, MQCT, for inelastic scattering of two molecules is developed, in...
The mixed quantum/classical theory (MQCT) for rotationally inelastic scattering developed recently [...
A hierarchy of approximate methods is proposed for solving the equations of motion within a framewor...
The mixed quantum/classical theory (MQCT) formulated in the space-fixed reference frame is used to c...
It is shown that the mixed quantum/classical theory (MQCT) for the description of molecular scatteri...
A mixed quantum/classical theory (MQCT) for the inelastic collision of two asymmetric-top rotor mole...
The details of energy transfer between colliding atoms and molecules is essential in order to unders...
An efficient and accurate mixed quantum/classical theory approach for computational treatment of ine...
A mixed quantum/classical approach to inelastic scattering (MQCT) is developed in which the relative...
For computational treatment of rotationally inelastic scattering of molecules, we propose to use the...
A computationally affordable methodology is developed to predict cross sections and rate coefficient...
A mixed quantum/classical theory (MQCT) for the inelastic collision of two asymmetric-top rotor mole...
The mixed quantum/classical theory (MQCT) for inelastic molecule-atom scattering developed recently ...
Theoretical foundation is laid out for description of permutation symmetry in the inelastic scatteri...
We formulated the mixed quantum/classical theory for rotationally and vibrationally inelastic scatte...
The mixed quantum classical theory, MQCT, for inelastic scattering of two molecules is developed, in...
The mixed quantum/classical theory (MQCT) for rotationally inelastic scattering developed recently [...
A hierarchy of approximate methods is proposed for solving the equations of motion within a framewor...
The mixed quantum/classical theory (MQCT) formulated in the space-fixed reference frame is used to c...
It is shown that the mixed quantum/classical theory (MQCT) for the description of molecular scatteri...
A mixed quantum/classical theory (MQCT) for the inelastic collision of two asymmetric-top rotor mole...
The details of energy transfer between colliding atoms and molecules is essential in order to unders...