The matter-wave laser interferometer gravitation antenna (MIGA): New perspectives for fundamental physics and geosciences
CHAIBI, W.
Astrophysique Relativiste Théories Expériences Métrologie Instrumentation Signaux [ARTEMIS]
Astrophysique Relativiste Théories Expériences Métrologie Instrumentation Signaux [ARTEMIS]
MERZOUGUI, M.
Astrophysique Relativiste Théories Expériences Métrologie Instrumentation Signaux [ARTEMIS]
< Leer menos
Astrophysique Relativiste Théories Expériences Métrologie Instrumentation Signaux [ARTEMIS]
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en
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Este ítem está publicado en
E3S Web of Conferences, i-DUST 2014 – Inter-Disciplinary Underground Science & Technology, 2014-05-05, Apt. 2014-12, vol. 4, p. 01004
Resumen en inglés
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 ...Leer más >
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 the evolution of the gravitational field at unprecedented sensitivity, which will be exploited both for geophysical studies and for Gravitational Waves (GWs) detection. This new infrastructure will be embedded into the LSBB underground laboratory, ideally located away from major anthropogenic disturbances and benefitting from very low background noise.< Leer menos
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