We propose a marginally stable optical resonator suitable for atom interferometry. The resonator geometry is based on two flat mirrors at the focal planes of a lens that produces the large beam waist required to coherently manipulate cold atomic ensembles. Optical gains of about 100 are achievable using optics with part-per-thousand losses. The resulting power build-up will allow for enhanced coherent manipulation of the atomic wavepackets such as large separation beamsplitters. We study the effect of longitudinal misalignments and assess the robustness of the resonator in terms of intensity and phase profiles of the intra-cavity field. We also study how to implement atom interferometry based on large momentum transfer Bragg diffraction i...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
This thesis details the experimental investigation of a new type of atom interferometer using rubidi...
Enhancement cavities where a beam of large size (several millimeters) can resonate have several appl...
We propose a marginally stable optical resonator suitable for atom interferometry. The resonator geo...
International audienceWe present the analysis of a half degenerate optical resonator consisting of a...
We propose and demonstrate a new scheme for atom interferometry, using light pulses inside an optica...
We propose to engineer the atomic band structure in optical lattices in order to design a Fabry-Pero...
Optical cavities are proposed as powerful tools for the realization of large momentum beam splitters...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
Matter wave interferometry with laser pulses has become a powerful tool for precision measurement. O...
International audienceWavefront aberrations are identified as a major limitation in quantum sensors....
<p>Atom interferometers employing optical cavities to enhance the beam splitter pulses promise signi...
Atom matterwave interferometry requires mirror and beamsplitter pulses that are robust to inhomogene...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
This thesis details the experimental investigation of a new type of atom interferometer using rubidi...
Enhancement cavities where a beam of large size (several millimeters) can resonate have several appl...
We propose a marginally stable optical resonator suitable for atom interferometry. The resonator geo...
International audienceWe present the analysis of a half degenerate optical resonator consisting of a...
We propose and demonstrate a new scheme for atom interferometry, using light pulses inside an optica...
We propose to engineer the atomic band structure in optical lattices in order to design a Fabry-Pero...
Optical cavities are proposed as powerful tools for the realization of large momentum beam splitters...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
Matter wave interferometry with laser pulses has become a powerful tool for precision measurement. O...
International audienceWavefront aberrations are identified as a major limitation in quantum sensors....
<p>Atom interferometers employing optical cavities to enhance the beam splitter pulses promise signi...
Atom matterwave interferometry requires mirror and beamsplitter pulses that are robust to inhomogene...
We experimentally and theoretically study the diffraction phase of large-momentum transfer beam spli...
This thesis details the experimental investigation of a new type of atom interferometer using rubidi...
Enhancement cavities where a beam of large size (several millimeters) can resonate have several appl...