activity
20182020
most citedCharacterizing Earth gravity field fluctuations with the MIGA antenna for future Gravitational Wave detectors

31 citations · 45 across the 3 of their papers we have counts for

collaborators

5 papers

physics.atom-ph202013 cited

Technologies for the ELGAR large scale atom interferometer array

B. Canuel, S. Abend, P. Amaro-Seoane +56

We proposed the European Laboratory for Gravitation and Atom-interferometric Research (ELGAR), an array of atom gradiometers aimed at studying space-time and gravitation with the p…

physics.atom-ph20191 cited

A fibered laser system for the MIGA large scale atom interferometer

D. O. Sabulsky, J. Junca, G. Lefèvre +12

We describe the realization and characterization of a compact, autonomous fiber laser system that produces the optical frequencies required for laser cooling, trapping, manipulatio…

gr-qc2019

AEDGE: Atomic Experiment for Dark Matter and Gravity Exploration in Space

Yousef Abou El-Neaj, Cristiano Alpigiani, Sana Amairi-Pyka +129

We propose in this White Paper a concept for a space experiment using cold atoms to search for ultra-light dark matter, and to detect gravitational waves in the frequency range bet…

physics.atom-ph201931 cited

Characterizing Earth gravity field fluctuations with the MIGA antenna for future Gravitational Wave detectors

J. Junca, A. Bertoldi, D. O. Sabulsky +8

Fluctuations of the earth's gravity field are a major noise source for ground-based experiments investigating general relativity phenomena such as Gravitational Waves (GWs). Mass d…

physics.atom-ph2018

Experiment to detect dark energy forces using atom interferometry

Dylan Sabulsky, Indranil Dutta, E. A. Hinds +3

The accelerated expansion of the universe motivates a wide class of scalar field theories that modify gravity on large scales. In regions where the weak field limit of General Rela…