In a recent experiment [1], it was observed that a sequence of two standing wave square pulses can split a BEC at rest into +/- 2 h_bar k diffraction orders with almost 100% efficiency. By truncating the Raman-Nath equations to a 2-state model, we provide an intuitive picture that explains this double square pulse beamsplitter scheme. We further show it is possible to optimize a standingwave multi square pulse sequence to efficiently diffract an atom at rest to symmetric superposition of +/- 2n h_bar k diffraction order with n>1. The approach is considered to be qualitatively different from the traditional light pulse schemes in the Bragg or the Raman-Nath region, and can be extended to more complex atomic optical elements that produce vari...
We report on a technique to split an at. beam coherently with an easily adjustable splitting angle. ...
We demonstrate a coherent and dynamic beam splitter based on light storage in cold atoms. An input w...
In a typical atomic interferometer, the atomic wavepacket is split first by what can be considered e...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
International audienceIIn this paper we demonstrate a new scheme for Raman transitions which realize...
We investigate schemes for the clean splitting of beams of three-level atoms using two standing-wave...
We study theoretically the diffraction of atoms by a standing-wave light field. Conceptually the tex...
International audienceWe demonstrate the realization of a scheme for cold-atom gravimetry based on t...
We report the experimental realization of a multibeam atom laser. A single continuous atom laser is ...
We present a methodology for the design of optimal Raman beam-splitter pulses suitable for cold atom...
In a retroreflective scheme with an atom initially at rest, atomic Raman diffraction adopts some of ...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
The use of retroreflection in light-pulse atom interferometry under microgravity conditions naturall...
We report on a novel atomic beamsplitter. It combines the advantages of Bragg scattering (transfer p...
A coherent atomic beam splitter can be realized using the transient dynamics of a chaotic system. We...
We report on a technique to split an at. beam coherently with an easily adjustable splitting angle. ...
We demonstrate a coherent and dynamic beam splitter based on light storage in cold atoms. An input w...
In a typical atomic interferometer, the atomic wavepacket is split first by what can be considered e...
Light pulses have proven to be a powerful and versatile tool to implement beam splitters and mirrors...
International audienceIIn this paper we demonstrate a new scheme for Raman transitions which realize...
We investigate schemes for the clean splitting of beams of three-level atoms using two standing-wave...
We study theoretically the diffraction of atoms by a standing-wave light field. Conceptually the tex...
International audienceWe demonstrate the realization of a scheme for cold-atom gravimetry based on t...
We report the experimental realization of a multibeam atom laser. A single continuous atom laser is ...
We present a methodology for the design of optimal Raman beam-splitter pulses suitable for cold atom...
In a retroreflective scheme with an atom initially at rest, atomic Raman diffraction adopts some of ...
We propose a method to characterize the ultra-narrow momentum distribution of atomic gases by employ...
The use of retroreflection in light-pulse atom interferometry under microgravity conditions naturall...
We report on a novel atomic beamsplitter. It combines the advantages of Bragg scattering (transfer p...
A coherent atomic beam splitter can be realized using the transient dynamics of a chaotic system. We...
We report on a technique to split an at. beam coherently with an easily adjustable splitting angle. ...
We demonstrate a coherent and dynamic beam splitter based on light storage in cold atoms. An input w...
In a typical atomic interferometer, the atomic wavepacket is split first by what can be considered e...