AbstractTrajectories are a central concept in our understanding of classical phenomena and also in rationalizing quantum mechanical effects. In this work we provide a way to determine semiclassical paths, approximations to quantum averages in phase space, directly from classical trajectories. We avoid the need of intermediate steps, like particular solutions to the Schroedinger equation or numerical integration in phase space by considering the system to be initially in a coherent state and by assuming that its early dynamics is governed by the Heller semiclassical approximation. Our result is valid for short propagation times only, but gives non-trivial information on the quantum-classical transition
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
A general semiclassical method in phase space based on the final value representation of the Wigner ...
AbstractTrajectories are a central concept in our understanding of classical phenomena and also in r...
The semiclassical approximation for the quantum propagator of the kicked top is shown to involve not...
The semiclassical approximation for the quantum propagator of the kicked top is shown to involve not...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
We present a complete derivation of the semiclassical limit of the coherent-state propagator in one ...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
Physical systems have been traditionally described in terms of either classical or quantum mechanics...
Semiclassical approaches to chemical dynamics show great promise as methods to obtain practical resu...
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
A general semiclassical method in phase space based on the final value representation of the Wigner ...
AbstractTrajectories are a central concept in our understanding of classical phenomena and also in r...
The semiclassical approximation for the quantum propagator of the kicked top is shown to involve not...
The semiclassical approximation for the quantum propagator of the kicked top is shown to involve not...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
We present a trajectory-based method that incorporates quantum effects in the context of Hamiltonian...
We present a complete derivation of the semiclassical limit of the coherent-state propagator in one ...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
We present a time-dependent semiclassical method based on quantum trajectories. Quantum-mechanical e...
Physical systems have been traditionally described in terms of either classical or quantum mechanics...
Semiclassical approaches to chemical dynamics show great promise as methods to obtain practical resu...
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
The overcompleteness of the coherent states basis leads to a multiplicity of representations of Feyn...
A general semiclassical method in phase space based on the final value representation of the Wigner ...