Project description
Quantum inertial sensors based on cold atom interferometry have reached a level of performances and maturity allowing for scientific and commercial use in various applications [1]. Their sensitivity and accuracy are expected to increase dramatically in microgravity, where the interrogation time is no longer limited by the size of the instrument. This triggered a recent interest in developing this technology for space with potential applications in geodesy [2], (...)
Internships
List of the internships proposed by our team for the academic year 2023-2024
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Stabilized laser sources for spatial interferometry
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Quantum metrology for atom-interferometric inertial sensing
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Ultracold atom gravimeter
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Etude de la compression du bruit de spin dans une cavité optique intégrée sur une puce à atomes
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Modélisation de performances d’un gyromètre à atomes froids guidés sur puce
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Quantum sensing of the gravity field
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Atom chip technology for quantum gravity sensing
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Delta Kick Squeezing for Atom Interferometry beyond the Standard Quantum Limit