We study the diffraction phase of different orders via the Dyson expansion series, for ultracold atomic gases scattered by a standing-wave pulse. As these diffraction phases are not observable in a single-pulse scattering process, a temporal Talbot-Lau interferometer consisting of two standing-wave pulses is demonstrated experimentally with a Bose-Einstein condensate to explore this physical effect. The role of the diffraction phases is clearly shown by the second standing-wave pulse in the relative population of different momentum states. Our experiments demonstrate obvious effects beyond the Raman-Nath method, while they agree well with our theory by including the diffraction phases. In particular, the observed asymmetry in the dependence...
We demonstrated an experimental technique based on stimulated light scattering to continuously sampl...
We show that single and multislit experiments involving matter waves may be constructed to assess di...
We theoretically analyze the Bragg spectroscopic interferometer of two spatially separated atomic Bo...
We study the effects of strong inter-particle interaction on diffraction of a Bose-Einstein condensa...
v3 11/03/03International audienceDiffraction of atoms by laser is a very important tool for matterwa...
Using Bloch states to describe atomic motion, we show how to calculate the phase shifts associated t...
We study the diffraction of a released sodium Bose-Einstein condensate by a pulsed standing light wa...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
We have observed the diffraction of a Bose-Einstein condensate of rubidium atoms on a vibrating mirr...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
Slow atoms from a magneto-optical trap are used to study diffraction from a near-resonant standing-w...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
Most of our results in the past year reflect our focus on strongly interacting quantum gases. The hi...
We demonstrate the temporal Talbot effect for trapped matter waves using ultracold atoms in an optic...
In a retroreflective scheme with an atom initially at rest, atomic Raman diffraction adopts some of ...
We demonstrated an experimental technique based on stimulated light scattering to continuously sampl...
We show that single and multislit experiments involving matter waves may be constructed to assess di...
We theoretically analyze the Bragg spectroscopic interferometer of two spatially separated atomic Bo...
We study the effects of strong inter-particle interaction on diffraction of a Bose-Einstein condensa...
v3 11/03/03International audienceDiffraction of atoms by laser is a very important tool for matterwa...
Using Bloch states to describe atomic motion, we show how to calculate the phase shifts associated t...
We study the diffraction of a released sodium Bose-Einstein condensate by a pulsed standing light wa...
We have developed a novel interferometer for atom de Broglie waves, where amplitude division and rec...
We have observed the diffraction of a Bose-Einstein condensate of rubidium atoms on a vibrating mirr...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
Slow atoms from a magneto-optical trap are used to study diffraction from a near-resonant standing-w...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
Most of our results in the past year reflect our focus on strongly interacting quantum gases. The hi...
We demonstrate the temporal Talbot effect for trapped matter waves using ultracold atoms in an optic...
In a retroreflective scheme with an atom initially at rest, atomic Raman diffraction adopts some of ...
We demonstrated an experimental technique based on stimulated light scattering to continuously sampl...
We show that single and multislit experiments involving matter waves may be constructed to assess di...
We theoretically analyze the Bragg spectroscopic interferometer of two spatially separated atomic Bo...