We propose a highly efficient mixed quantum-classical molecular dynamics scheme based on a solution of the quantum-classical Liouville equation (QCLE). By casting the equations of motion for the quantum subsystem and classical bath degrees of freedom onto an approximate set of coupled first-order differential equations for <i>c</i>-numbers, this scheme propagates the composite system in time deterministically in terms of independent classical-like trajectories. To demonstrate its performance, we apply the method to the spin-boson model, a photoinduced electron transfer model, and a Fenna–Matthews–Olsen complex model, and find excellent agreement out to long times with the numerically exact results, using several orders of magnitude fewer tr...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Mixed quantum-classical methods provide powerful algorithms for the simulation of quantum processes ...
The propagation of quantum/classical molecular dynamics equations is investigated from two different...
Mixed quantum-classical equations of motion are derived for a quantum subsystem of light (mass m) pa...
An algorithm for the simulation of quantum-classical dynamics is presented. Quantum-classical evolut...
An algorithm is presented for the exact solution of the evolution of the density matrix of a mixed q...
Simulating the exact quantum dynamics of realistic interacting systems is presently a task beyond re...
Simulating the exact quantum dynamics of realistic interacting systems is presently a task beyond re...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
grantor: University of TorontoMixed quantum-classical equations of motion are derived for ...
grantor: University of TorontoMixed quantum-classical equations of motion are derived for ...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
In mixed quantum-classical molecular dynamics few but important degrees of freedom of a dynamical sy...
In mixed quantum-classical molecular dynamics few but important degrees of freedom of a molecular sy...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Mixed quantum-classical methods provide powerful algorithms for the simulation of quantum processes ...
The propagation of quantum/classical molecular dynamics equations is investigated from two different...
Mixed quantum-classical equations of motion are derived for a quantum subsystem of light (mass m) pa...
An algorithm for the simulation of quantum-classical dynamics is presented. Quantum-classical evolut...
An algorithm is presented for the exact solution of the evolution of the density matrix of a mixed q...
Simulating the exact quantum dynamics of realistic interacting systems is presently a task beyond re...
Simulating the exact quantum dynamics of realistic interacting systems is presently a task beyond re...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
grantor: University of TorontoMixed quantum-classical equations of motion are derived for ...
grantor: University of TorontoMixed quantum-classical equations of motion are derived for ...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
In mixed quantum-classical molecular dynamics few but important degrees of freedom of a dynamical sy...
In mixed quantum-classical molecular dynamics few but important degrees of freedom of a molecular sy...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Mixed quantum-classical methods provide powerful algorithms for the simulation of quantum processes ...
The propagation of quantum/classical molecular dynamics equations is investigated from two different...