The Sagnac effect enables interferometric measurements of rotation with high precision. Using matter waves instead of light promises resolution enhancement by orders of magnitude that scales with particle mass. So far, the paradigm for matter wave Sagnac interferometry relies on DeBroglie waves and thus on free propagation of atoms either in free fall or within waveguides. However, the Sagnac effect can be expressed as a propertime difference experienced by two observers moving in opposite directions along closed paths and has indeed been measured with atomic clocks flown around Earth. Inspired by this, we investigate an interferometer comprised of a single atomic clock. The Sagnac effect manifests as a phase shift between trapped atoms in ...
We present the full evaluation of a cold atom gyroscope based on atom interferometry. We have perfor...
The purpose of my thesis was to use the recent developments of atom laser manipulation to build a de...
This thesis describes the implementation of new atom interferometry techniques to improve the stabil...
© 2015 American Physical Society. © 2015 American Physical Society. The Sagnac effect enables interf...
We describe our progress in the development of an atom based rotation sensor, which employs state-de...
We discuss a scheme to implement a gyroscopic atom sensor with magnetically trapped ultra-cold atoms...
The sensitivity of light and matter-wave interferometers to rotations is based on the Sagnac effect ...
International audienceA rotating interferometer with paths that enclose a physical area exhibits a p...
Sagnac interferometers with massive particles promise unique advantages in achieving high-precision ...
This thesis presents the experimental scheme for a guided cold atom Sagnac interferometer. Although ...
We present two novel matter-wave Sagnac interferometers based on ring-shaped time-averaged adiabatic...
We realize beam splitters and mirrors for atom waves by employing a sequence of light pulses rather ...
We report on the realization of a compact atomic Mach-Zehndertype Sagnac interferometer of 13.7 cm l...
International audienceMulti-loop matter-wave interferometers are essential in quantum sensing to ext...
We present the full evaluation of a cold atom gyroscope based on atom interferometry. We have perfor...
The purpose of my thesis was to use the recent developments of atom laser manipulation to build a de...
This thesis describes the implementation of new atom interferometry techniques to improve the stabil...
© 2015 American Physical Society. © 2015 American Physical Society. The Sagnac effect enables interf...
We describe our progress in the development of an atom based rotation sensor, which employs state-de...
We discuss a scheme to implement a gyroscopic atom sensor with magnetically trapped ultra-cold atoms...
The sensitivity of light and matter-wave interferometers to rotations is based on the Sagnac effect ...
International audienceA rotating interferometer with paths that enclose a physical area exhibits a p...
Sagnac interferometers with massive particles promise unique advantages in achieving high-precision ...
This thesis presents the experimental scheme for a guided cold atom Sagnac interferometer. Although ...
We present two novel matter-wave Sagnac interferometers based on ring-shaped time-averaged adiabatic...
We realize beam splitters and mirrors for atom waves by employing a sequence of light pulses rather ...
We report on the realization of a compact atomic Mach-Zehndertype Sagnac interferometer of 13.7 cm l...
International audienceMulti-loop matter-wave interferometers are essential in quantum sensing to ext...
We present the full evaluation of a cold atom gyroscope based on atom interferometry. We have perfor...
The purpose of my thesis was to use the recent developments of atom laser manipulation to build a de...
This thesis describes the implementation of new atom interferometry techniques to improve the stabil...