We present experimental observations of atom-light interactions within tens of nanometers (down to 11 nm) of a sapphire surface. Using photon counting we detect the fluorescence from of order one thousand Rb or Cs atoms, confined in a vapor with thickness much less than the optical excitation wavelength. The asymmetry in the spectral line shape provides a direct readout of the atom-surface potential. A numerical fit indicates a power law −Cα/rα with α=3.02±0.06 confirming that the van der Waals interaction dominates over other effects. The extreme sensitivity of our photon-counting technique may allow the search for atom-surface bound states
Cavity quantum electrodynamics provides the setting for quantum control of strong interactions betwe...
We analyse the lineshape of the fluorescence emitted by a cloud of optically excited cold atoms and ...
We study how the radiative properties of a dense ensemble of atoms can be modified when they are pla...
We present experimental observations of atom-light interactions within tens of nanometers (down to 1...
We present experimental observations of atom-light interactions within tens of nanometers (down to 1...
We measure the resonance line shape of atomic-vapor layers with nanoscale thickness confined between...
The van der Waals atom-surface attraction, scaling as C3 z-3 for z the atom-surface distance, is exp...
This paper presents our current measurements in a vapor nanocell aiming at a test of the distance-de...
The atom-surface interaction is an universal dipole-dipole interaction between neutral bodies and a ...
We study the optical excitation spectrum of an atom in the vicinity of a dielectric surface. We calc...
We report on different spectroscopic experiments in an ultra thin vapour cell for thickness from 30 ...
5 pages, 4 figures. Supplemental Material (7 pages). Units in Figure 2 and 3 correctedWe demonstrate...
à paraitre dans : Advances in Atomic Molecular and Optical Physics, vol.50, B. Bederson and H. Walth...
In this thesis we have studied different aspects of the interaction between an atom and a dielectric...
Alkali vapors confined in nano-scale cells are promising tools for future integrated atom-based sens...
Cavity quantum electrodynamics provides the setting for quantum control of strong interactions betwe...
We analyse the lineshape of the fluorescence emitted by a cloud of optically excited cold atoms and ...
We study how the radiative properties of a dense ensemble of atoms can be modified when they are pla...
We present experimental observations of atom-light interactions within tens of nanometers (down to 1...
We present experimental observations of atom-light interactions within tens of nanometers (down to 1...
We measure the resonance line shape of atomic-vapor layers with nanoscale thickness confined between...
The van der Waals atom-surface attraction, scaling as C3 z-3 for z the atom-surface distance, is exp...
This paper presents our current measurements in a vapor nanocell aiming at a test of the distance-de...
The atom-surface interaction is an universal dipole-dipole interaction between neutral bodies and a ...
We study the optical excitation spectrum of an atom in the vicinity of a dielectric surface. We calc...
We report on different spectroscopic experiments in an ultra thin vapour cell for thickness from 30 ...
5 pages, 4 figures. Supplemental Material (7 pages). Units in Figure 2 and 3 correctedWe demonstrate...
à paraitre dans : Advances in Atomic Molecular and Optical Physics, vol.50, B. Bederson and H. Walth...
In this thesis we have studied different aspects of the interaction between an atom and a dielectric...
Alkali vapors confined in nano-scale cells are promising tools for future integrated atom-based sens...
Cavity quantum electrodynamics provides the setting for quantum control of strong interactions betwe...
We analyse the lineshape of the fluorescence emitted by a cloud of optically excited cold atoms and ...
We study how the radiative properties of a dense ensemble of atoms can be modified when they are pla...