An algorithm for the simulation of quantum-classical dynamics is presented. Quantum-classical evolution is effected by a propagator exp(i (L) over capt) involving the quantum classical Liouville operator (L) over cap that describes the evolution of a quantum subsystem coupled to a classical bath. Such a mixed description provides a means to study the dynamics of complex many-body systems where certain degrees of freedom are treated quantum mechanically. The algorithm is constructed by decomposing the time interval Deltat into small segments of length At and successively applying the propagator in the short time segments to obtain the evolution for long times. The algorithm is shown to be a discretization of the iterated Dyson form of the pr...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
The propagation of quantum/classical molecular dynamics equations is investigated from two different...
We propose a highly efficient mixed quantum-classical molecular dynamics scheme based on a solution ...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Quantum computers could potentially simulate the dynamics of systems such as polyatomic molecules on...
The quantum-classical Liouville equation provides a description of the dynamics of a quantum subsyst...
The simple algorithm for the simulation and visualization of non relativistic quantum dynamics is pr...
An algorithm is presented for the exact solution of the evolution of the density matrix of a mixed q...
In this thesis quantum-classical dynamics is applied to the study of quantum condensed phase process...
We derive an exact quantum propagator for nonadiabatic dynamics in multi-state systems using the map...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
Quantum rate processes in condensed phase systems are often computed by combining quantum and classi...
The propagation of quantum/classical molecular dynamics equations is investigated from two different...
We propose a highly efficient mixed quantum-classical molecular dynamics scheme based on a solution ...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Solving quantum dynamics is an exponentially difficult problem. Thus, an exact numerical solution is...
Quantum computers could potentially simulate the dynamics of systems such as polyatomic molecules on...
The quantum-classical Liouville equation provides a description of the dynamics of a quantum subsyst...
The simple algorithm for the simulation and visualization of non relativistic quantum dynamics is pr...
An algorithm is presented for the exact solution of the evolution of the density matrix of a mixed q...
In this thesis quantum-classical dynamics is applied to the study of quantum condensed phase process...
We derive an exact quantum propagator for nonadiabatic dynamics in multi-state systems using the map...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...
A density matrix evolution(DME) method to simulate the dynamics of quantum systems embedded in a cla...