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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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 -
December 1, 2014 (v1)Journal article
International audience
Uploaded on: December 4, 2022 -
March 21, 2015 (v1)Conference paper
The MIGA project aims at demonstrating precision measurements of gravity with cold atom sensors in a large scale instrument and at studying the associated applications in geosciences and fundamental physics. The first stage of the project (2013-2018) will consist in building a 300-meter long optical cavity to interrogate atom interferometers...
Uploaded on: December 3, 2022 -
March 21, 2015 (v1)Conference paper
The MIGA project aims at demonstrating precision measurements of gravity with cold atom sensors in a large scale instrument and at studying the associated applications in geosciences and fundamental physics. The first stage of the project (2013-2018) will consist in building a 300-meter long optical cavity to interrogate atom interferometers...
Uploaded on: February 22, 2023 -
April 29, 2016 (v1)Conference paper
International audience
Uploaded on: December 3, 2022 -
April 29, 2016 (v1)Conference paper
The Matter-Wave laser Interferometer Gravitation Antenna, MIGA, will be a hybrid instrument composed of a network of atom interferometers horizontally aligned and interrogated by the resonant field of an optical cavity. This detector will provide measurements of sub Hertz variations of the gravitational strain tensor. MIGA will bring new...
Uploaded on: January 13, 2025 -
September 2018 (v1)Journal article
We present the MIGA experiment, an underground long baseline atom interferometer to study gravity at large scale. The hybrid atom-laser antenna will use several atom interferometers simultaneously interrogated by the resonant mode of an optical cavity. The instrument will be a demonstrator for gravitational wave detection in a frequency band...
Uploaded on: December 4, 2022 -
December 2018 (v1)Journal article
International audience
Uploaded on: December 4, 2022 -
September 2018 (v1)Journal article
We present the MIGA experiment, an underground long baseline atom interferometer to study gravity at large scale. The hybrid atom-laser antenna will use several atom interferometers simultaneously interrogated by the resonant mode of an optical cavity. The instrument will be a demonstrator for gravitational wave detection in a frequency band...
Uploaded on: February 23, 2023