The sensitivity of light and matter-wave interferometers to rotations is based on the Sagnac effect and increases with the area enclosed by the interferometer. In the case of light, the latter can be enlarged by forming multiple fibre loops, whereas the equivalent for matter-wave interferometers remains an experimental challenge. We present a concept for a multi-loop atom interferometer with a scalable area formed by light pulses. Our method will offer sensitivities as high as 2×10−11 rad/s at 1 s in combination with the respective long-term stability as required for Earth rotation monitoring
We present two novel matter-wave Sagnac interferometers based on ring-shaped time-averaged adiabatic...
Sagnac interferometers with massive particles promise unique advantages in achieving high-precision ...
Cold-atom inertial sensors target several applications in navigation, geoscience and tests of fundam...
Abstract The sensitivity of light and matter-wave interferometers to rotations is based on the Sagna...
© 2015 American Physical Society. © 2015 American Physical Society. The Sagnac effect enables interf...
The Sagnac effect enables interferometric measurements of rotation with high precision. Using matter...
We realize beam splitters and mirrors for atom waves by employing a sequence of light pulses rather ...
We discuss a scheme to implement a gyroscopic atom sensor with magnetically trapped ultra-cold atoms...
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 describe our progress in the development of an atom based rotation sensor, which employs state-de...
This thesis describes the implementation of new atom interferometry techniques to improve the stabil...
The scientific objectives for this proposal were: (1) development of a rugged laser cooled source of...
Inertial sensors based on cold atoms have great potential for navigation, geodesy, or fundamental ph...
International audienceCold-atom inertial sensors target several applications in navigation, geoscien...
We present two novel matter-wave Sagnac interferometers based on ring-shaped time-averaged adiabatic...
Sagnac interferometers with massive particles promise unique advantages in achieving high-precision ...
Cold-atom inertial sensors target several applications in navigation, geoscience and tests of fundam...
Abstract The sensitivity of light and matter-wave interferometers to rotations is based on the Sagna...
© 2015 American Physical Society. © 2015 American Physical Society. The Sagnac effect enables interf...
The Sagnac effect enables interferometric measurements of rotation with high precision. Using matter...
We realize beam splitters and mirrors for atom waves by employing a sequence of light pulses rather ...
We discuss a scheme to implement a gyroscopic atom sensor with magnetically trapped ultra-cold atoms...
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 describe our progress in the development of an atom based rotation sensor, which employs state-de...
This thesis describes the implementation of new atom interferometry techniques to improve the stabil...
The scientific objectives for this proposal were: (1) development of a rugged laser cooled source of...
Inertial sensors based on cold atoms have great potential for navigation, geodesy, or fundamental ph...
International audienceCold-atom inertial sensors target several applications in navigation, geoscien...
We present two novel matter-wave Sagnac interferometers based on ring-shaped time-averaged adiabatic...
Sagnac interferometers with massive particles promise unique advantages in achieving high-precision ...
Cold-atom inertial sensors target several applications in navigation, geoscience and tests of fundam...