We propose a semi-classical interpretation of the geometric scalar and vector potentials that arise due to Berry's phase when an atom moves slowly in a light field. Starting from the full quantum Hamiltonian, we turn to a classical description of the atomic centre-of-mass motion while still treating the internal degrees of freedom as quantum variables. We show that the scalar potential can be identified as the kinetic energy of an atomic micro-motion caused by quantum fluctuations of the radiative force, and that the Lorentz-type force appears as a result of the motion-induced perturbation of the internal atomic state. For a specific configuration involving two counter-propagating Gaussian laser beams, we relate the geometric forces to the ...
The transport equations for moving atoms in interaction with laser fields, are derived using the ham...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
International audienceWe study the quantum force between classical objects mediated by massive scala...
https://pro.college-de-france.fr/jean.dalibard/publi3/jphys\₈5.pdfInternational audienceThe quantum ...
The usual multipolar Hamiltonian for atom-light interaction features a nonrelativistic moving atom i...
The geometric phase manifests itself in many different phenomena of physics ranging from the polariz...
We present a general theoretical framework for the exact treatment of a hybrid system that is compos...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
When a neutral atom moves in a properly designed laser field, its center-of-mass motion may mimic th...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
We investigate the quantum dynamics of a moderately driven two-level particle in free space or modif...
Abstract. In this paper we present a theory which shows that the optical force on atoms due to spont...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
The transport equations for moving atoms in interaction with laser fields, are derived using the ham...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
International audienceWe study the quantum force between classical objects mediated by massive scala...
https://pro.college-de-france.fr/jean.dalibard/publi3/jphys\₈5.pdfInternational audienceThe quantum ...
The usual multipolar Hamiltonian for atom-light interaction features a nonrelativistic moving atom i...
The geometric phase manifests itself in many different phenomena of physics ranging from the polariz...
We present a general theoretical framework for the exact treatment of a hybrid system that is compos...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
A new approach to the theory of the geometric phase in quantum mechanics, based entirely on kinemati...
When a neutral atom moves in a properly designed laser field, its center-of-mass motion may mimic th...
Accepted for publication in Reviews of Modern Physics (Colloquium)International audienceWhen a neutr...
We investigate the quantum dynamics of a moderately driven two-level particle in free space or modif...
Abstract. In this paper we present a theory which shows that the optical force on atoms due to spont...
We are accustomed to think the phase of single particle states does not matter. After all, the phase...
This thesis presents an account of experimental and numerical investigations of two quantum systems ...
The transport equations for moving atoms in interaction with laser fields, are derived using the ham...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
International audienceWe study the quantum force between classical objects mediated by massive scala...