A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigated theoretically. The intensity or frequency of the light is modulated in order to create sidebands on the reflected de Broglie wave. The weights and phases of the various sidebands are calculated using three different approaches: the Born approximation, a semiclassical path integral approach, and a numerical solution of the time-dependent Schrödinger equation. We show how this modulated mirror could be used to build practical atomic interferometers
https://pro.college-de-france.fr/jean.dalibard/publications/diffrac96.pdfInternational audienceWe me...
Atom-optics experiments are presented using a time-modulated evanescent light wave as an atomic mirr...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
https://pro.college-de-france.fr/jean.dalibard/publications/phase95.pdfInternational audienceCesium ...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
Abstract.We present a new separated beam atom interferom-eter in which the recombination of the atom...
Modern studies have confirmed the possibility of making atomic mirrors using quadrupole-active atomi...
In the first part of this article we attempt to provide a very brief introduction to atom optics. In...
A special kind of atomic beam splitter using a four-level atomic system in combination with polarize...
We propose an atom interferometer with a nonvanishing proper time difference by combining two optica...
Atom optics, in analogy to electron or neutron optics, is concerned with the manipulation of atomic ...
We propose to engineer the atomic band structure in optical lattices in order to design a Fabry-Pero...
We describe an atom interferometer to study the coherence of atoms reflected from an evanescent wave...
Composition du jury : C. Imbert,Président J. Dalibard, Rapporteur J. Mlynek, Rapporteur K. M\o lmer,...
https://pro.college-de-france.fr/jean.dalibard/publications/diffrac96.pdfInternational audienceWe me...
Atom-optics experiments are presented using a time-modulated evanescent light wave as an atomic mirr...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
A novel atomic beam splitter, using reflection of atoms off an evanescent light wave, is investigate...
https://pro.college-de-france.fr/jean.dalibard/publications/phase95.pdfInternational audienceCesium ...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
Abstract.We present a new separated beam atom interferom-eter in which the recombination of the atom...
Modern studies have confirmed the possibility of making atomic mirrors using quadrupole-active atomi...
In the first part of this article we attempt to provide a very brief introduction to atom optics. In...
A special kind of atomic beam splitter using a four-level atomic system in combination with polarize...
We propose an atom interferometer with a nonvanishing proper time difference by combining two optica...
Atom optics, in analogy to electron or neutron optics, is concerned with the manipulation of atomic ...
We propose to engineer the atomic band structure in optical lattices in order to design a Fabry-Pero...
We describe an atom interferometer to study the coherence of atoms reflected from an evanescent wave...
Composition du jury : C. Imbert,Président J. Dalibard, Rapporteur J. Mlynek, Rapporteur K. M\o lmer,...
https://pro.college-de-france.fr/jean.dalibard/publications/diffrac96.pdfInternational audienceWe me...
Atom-optics experiments are presented using a time-modulated evanescent light wave as an atomic mirr...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...