Radiative corrections to an atom are calculated near a half-space that has arbitrarily shaped small depositions upon its surface. The method is based on calculation of the classical Green's function of the macroscopic Maxwell equations near an arbitrarily perturbed half-space using a Born-series expansion about the bare half-space Green's function. The formalism of macroscopic quantum electrodynamics is used to carry this over into the quantum picture. The broad utility of the calculated Green's function is demonstrated by using it to calculate two quantities: the spontaneous decay rate of an atom near a sharp surface feature and the Casimir-Polder potential of a finite grating deposited on a substrate. Qualitatively different behavior is f...
International audienceWe study the time evolution of the Casimir-Polder force acting on a neutral at...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
In this chapter we review past and current experimental approaches to measuring the long-range inter...
Radiative corrections to an atom are calculated near a half-space that has arbitrarily shaped small ...
We investigate theoretically the Casimir-Polder potential of an atom which is driven by a laser fiel...
Cold atoms can be trapped and guided using nanofabricated wires on microengineered surfaces, achievi...
We investigate the time-dependent Casimir-Polder potential of a polarizable two-level atom placed ne...
We discuss the dynamical (i.e. time-dependent) Casimir-Polder force between a neutral atom and a rea...
An atom irradiated by an off-resonant laser field near a surface is expected to experience the sum o...
Abstract: Spontaneous emission and Lamb shift of atoms in absorbing dielectrics are discussed. A Gre...
Using the Born expansion of the Green tensor, we consider the spontaneous decay rate of an excited ...
Quadrupole radiation of an atom in an arbitrary environment is investigated within classical as well...
International audienceThe modification of quantum fluctuations by a surface of finite reflectivity s...
We consider vacuum fluctuations of the quantum electromagnetic field in the presence of an infinite ...
This paper considers the interaction of an atom with an imperfectly reflecting surface; it studies t...
International audienceWe study the time evolution of the Casimir-Polder force acting on a neutral at...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
In this chapter we review past and current experimental approaches to measuring the long-range inter...
Radiative corrections to an atom are calculated near a half-space that has arbitrarily shaped small ...
We investigate theoretically the Casimir-Polder potential of an atom which is driven by a laser fiel...
Cold atoms can be trapped and guided using nanofabricated wires on microengineered surfaces, achievi...
We investigate the time-dependent Casimir-Polder potential of a polarizable two-level atom placed ne...
We discuss the dynamical (i.e. time-dependent) Casimir-Polder force between a neutral atom and a rea...
An atom irradiated by an off-resonant laser field near a surface is expected to experience the sum o...
Abstract: Spontaneous emission and Lamb shift of atoms in absorbing dielectrics are discussed. A Gre...
Using the Born expansion of the Green tensor, we consider the spontaneous decay rate of an excited ...
Quadrupole radiation of an atom in an arbitrary environment is investigated within classical as well...
International audienceThe modification of quantum fluctuations by a surface of finite reflectivity s...
We consider vacuum fluctuations of the quantum electromagnetic field in the presence of an infinite ...
This paper considers the interaction of an atom with an imperfectly reflecting surface; it studies t...
International audienceWe study the time evolution of the Casimir-Polder force acting on a neutral at...
. We derive the quantum-mechanical master equation (generalized optical Bloch equation) for an atom ...
In this chapter we review past and current experimental approaches to measuring the long-range inter...