A Schrödinger representation approach is used to calculate the atom-field dynamics following spontaneous emission by an atom in its excited state to a superposition of its two ground-state sublevels, in the case where the frequency separation of the ground-state sublevels is large compared to the excited-state decay rate. The emitted radiation is incident on a broadband photodetector. Using a relatively simple model for the photodetector, we show how a measurement of a photo-signal leaves the atom in a coherent superposition of the two ground states. The relative phase between the two ground-state amplitudes can be interpreted in terms of the temporal phase acquired in the time interval between spontaneous emission (viewed as a quantum...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
We investigate the time evolution of atomic population in a two-level atom driven by a monochromatic...
International audienceWe theoretically investigate signatures of stimulated emission at the single-p...
Spontaneous emission as a potential tool for creation of entanglement between two atoms is investtig...
We report a way of manipulating the spontaneous emission process leading to a spatial modulation of ...
We study a two-level atom in a double-well potential coupled to a continuum of electromagnetic modes...
The role of the collective antisymmetric state in entanglement creation by spontaneous emission in a...
We discuss the creation of entanglement between two two-level atoms in the dissipative process of sp...
Two uncoupled two-level atoms cannot be jointly excited by classical light under general circumstanc...
It is shown that the dissipation due to spontaneous emission can entangle two closely separated two-...
We analyse the influence of entanglement on the emission properties of atoms. To this end, we firstl...
We show that a dynamical suppression of spontaneous emission, predicted for a three-level atom [S.-Y...
We report a model that makes it possible to analyze quantitatively the dipole blockade effect on the...
The dynamics of an exact two-photon Hamiltonian is used to study the time evolution of an initially ...
We observe that a mesoscopic field made of several tens of microwave photons exhibits quantum featur...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
We investigate the time evolution of atomic population in a two-level atom driven by a monochromatic...
International audienceWe theoretically investigate signatures of stimulated emission at the single-p...
Spontaneous emission as a potential tool for creation of entanglement between two atoms is investtig...
We report a way of manipulating the spontaneous emission process leading to a spatial modulation of ...
We study a two-level atom in a double-well potential coupled to a continuum of electromagnetic modes...
The role of the collective antisymmetric state in entanglement creation by spontaneous emission in a...
We discuss the creation of entanglement between two two-level atoms in the dissipative process of sp...
Two uncoupled two-level atoms cannot be jointly excited by classical light under general circumstanc...
It is shown that the dissipation due to spontaneous emission can entangle two closely separated two-...
We analyse the influence of entanglement on the emission properties of atoms. To this end, we firstl...
We show that a dynamical suppression of spontaneous emission, predicted for a three-level atom [S.-Y...
We report a model that makes it possible to analyze quantitatively the dipole blockade effect on the...
The dynamics of an exact two-photon Hamiltonian is used to study the time evolution of an initially ...
We observe that a mesoscopic field made of several tens of microwave photons exhibits quantum featur...
Entanglement is generated by path-erasing detection of single photon emitted indistinguishably by tw...
We investigate the time evolution of atomic population in a two-level atom driven by a monochromatic...
International audienceWe theoretically investigate signatures of stimulated emission at the single-p...