We are building a hybrid detector of new concept that couples laser and matter-wave interferometry to study sub Hertz variations of the strain tensor of space-time and gravitation. Using a set of atomic interferometers simultaneously manipulated by the resonant optical field of a 200 m cavity, the MIGA instrument will allow the monitoring of...
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May 5, 2014 (v1)Conference paperUploaded on: March 25, 2023
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May 2019 (v1)Journal article
International audience
Uploaded on: December 3, 2022 -
June 4, 2018 (v1)Conference paper
International audience
Uploaded on: October 25, 2024 -
January 30, 2022 (v1)Conference paper
We report the realization of a large scale gravity antenna based on matter-wave interferometry, the MIGA project. This experiment consists in an array of cold Rb sources correlated by a 150 m long optical cavity. MIGA is in construction at the LSBB underground laboratory, a site that benefits from a low background noise and is an ideal premise...
Uploaded on: December 3, 2022 -
April 29, 2016 (v1)Conference paper
International audience
Uploaded on: December 3, 2022 -
March 25, 2017 (v1)Conference paper
We present two projects aiming to probe key aspects of the theory of General Relativity with high-precision quantum sensors. These projects use cold-atom interferometry with the aim of measuring gravitational waves and testing the equivalence principle. To detect gravitational waves, a large multi-sensor demonstrator is currently under...
Uploaded on: December 4, 2022 -
2017 (v1)Publication
We present two projects aiming to probe key aspects of the theory of General Relativity with high-precision quantum sensors. These projects use cold-atom interferometry with the aim of measuring gravitational waves and testing the equivalence principle. To detect gravitational waves, a large multi-sensor demonstrator is currently under...
Uploaded on: February 22, 2023