We perform quantum trajectory simulations of the decay dynamics of initially localised resonant states. Quantum dynamics is represented by a swarm of interacting trajectories which maps the originally quantum problem into the motion of an equivalent (higher-dimensional) classical system. We address two model problems, in which the decay of the initial resonance leads to either spatially confined or asymptotically free wave-packet dynamics, specifically on a double well potential and on a potential plain. The traditional choice of fixed boundary conditions in the interacting trajectory representation, set at infinity, is found to have a moderate influence on the accuracy of the interacting trajectory representation of quantum trajectory dyna...
We explore both classical and quantum dynamics of a model potential exhibiting a caldera: that is, a...
Quantum state diffusion shows how stochastic interaction with the environment may cause localisation...
The dynamics of a wide range of technologically important quantum systems are dominated by their int...
We perform quantum trajectory simulations of the decay dynamics of initially localised resonant stat...
The quantum trajectory framework incorporates quantum effects on dynamics through the quantum potent...
We approach quantum dynamics in one spatial dimension from a systematic study of moments starting fr...
International audienceOwing to its reactivity enhancing properties, quantum tunneling represents one...
Owing to its reactivity enhancing properties, quantum tunneling represents one of themost crucial ef...
A complete theoretical treatment in many problems relevant to physics, chemistry, and biology requir...
We report an efficient approach to accurately and efficiently compute transmission probabilities in ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2002.This thesis explores the boundar...
We investigate whether quantum theory can be understood as the continuum limit of a mechanical theor...
Five years ago, the first paper was published [1] that describes what has come to be known as the "M...
If frequent measurements ascertain whether a quantum system is still in its initial state, transitio...
A long-standing challenge in mixed quantum-classical trajectory simulations is the treatment of enta...
We explore both classical and quantum dynamics of a model potential exhibiting a caldera: that is, a...
Quantum state diffusion shows how stochastic interaction with the environment may cause localisation...
The dynamics of a wide range of technologically important quantum systems are dominated by their int...
We perform quantum trajectory simulations of the decay dynamics of initially localised resonant stat...
The quantum trajectory framework incorporates quantum effects on dynamics through the quantum potent...
We approach quantum dynamics in one spatial dimension from a systematic study of moments starting fr...
International audienceOwing to its reactivity enhancing properties, quantum tunneling represents one...
Owing to its reactivity enhancing properties, quantum tunneling represents one of themost crucial ef...
A complete theoretical treatment in many problems relevant to physics, chemistry, and biology requir...
We report an efficient approach to accurately and efficiently compute transmission probabilities in ...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2002.This thesis explores the boundar...
We investigate whether quantum theory can be understood as the continuum limit of a mechanical theor...
Five years ago, the first paper was published [1] that describes what has come to be known as the "M...
If frequent measurements ascertain whether a quantum system is still in its initial state, transitio...
A long-standing challenge in mixed quantum-classical trajectory simulations is the treatment of enta...
We explore both classical and quantum dynamics of a model potential exhibiting a caldera: that is, a...
Quantum state diffusion shows how stochastic interaction with the environment may cause localisation...
The dynamics of a wide range of technologically important quantum systems are dominated by their int...