The quantum trajectory framework incorporates quantum effects on dynamics through the quantum potential acting on a trajectory ensemble in addition to the classical potential. A global quadratic approximation to the quantum potential makes the method practical in many dimensions and captures dominant quantum effects in semiclassical systems. In this paper the approach is further developed to describe the “double well” dynamics—a prototype of the proton transfer reactions—which exhibits the “hard” quantum effect of tunneling. Accurate description is achieved by combining the approximate quantum trajectory dynamics with the population amplitudes in the reactant and product wells. The quantum trajectory dynamics is defined by the asymptotic cl...
International audienceWhile direct reactions with activation barriers are now routinely calculated, ...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
Owing to its reactivity enhancing properties, quantum tunneling represents one of themost crucial ef...
The quantum trajectory framework incorporates quantum effects on dynamics through the quantum potent...
National audienceIn this contribution, we expose a new mixed quantum-classical reaction dynamics met...
The quantum trajectory approach is generalized to arbitrary coordinate systems, including curvilinea...
Reaction rate constants can be directly obtained from evolution of the flux operator eigenvectors un...
In the presented thesis we study quantum reaction dynamics of H2O- using semiclassical method. Using...
Understanding reactivity is a central goal of chemical physics, and investigations in the condensed ...
Semiclassical approximations, simple as well as rigorous, are formulated in order to be able to desc...
We perform quantum trajectory simulations of the decay dynamics of initially localised resonant stat...
Exact quantum dynamical simulation of processes in highly coupled condensed phase reactions is extre...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
International audienceOwing to its reactivity enhancing properties, quantum tunneling represents one...
Quantum effects like tunneling, coherence, and zero point energy often play a significant role in ph...
International audienceWhile direct reactions with activation barriers are now routinely calculated, ...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
Owing to its reactivity enhancing properties, quantum tunneling represents one of themost crucial ef...
The quantum trajectory framework incorporates quantum effects on dynamics through the quantum potent...
National audienceIn this contribution, we expose a new mixed quantum-classical reaction dynamics met...
The quantum trajectory approach is generalized to arbitrary coordinate systems, including curvilinea...
Reaction rate constants can be directly obtained from evolution of the flux operator eigenvectors un...
In the presented thesis we study quantum reaction dynamics of H2O- using semiclassical method. Using...
Understanding reactivity is a central goal of chemical physics, and investigations in the condensed ...
Semiclassical approximations, simple as well as rigorous, are formulated in order to be able to desc...
We perform quantum trajectory simulations of the decay dynamics of initially localised resonant stat...
Exact quantum dynamical simulation of processes in highly coupled condensed phase reactions is extre...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
International audienceOwing to its reactivity enhancing properties, quantum tunneling represents one...
Quantum effects like tunneling, coherence, and zero point energy often play a significant role in ph...
International audienceWhile direct reactions with activation barriers are now routinely calculated, ...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
Owing to its reactivity enhancing properties, quantum tunneling represents one of themost crucial ef...