Abstract Atom-interferometric quantum sensors could revolutionize navigation, civil engineering, and Earth observation. However, operation in real-world environments is challenging due to external interference, platform noise, and constraints on size, weight, and power. Here we experimentally demonstrate that tailored light pulses designed using robust control techniques mitigate significant error sources in an atom-interferometric accelerometer. To mimic the effect of unpredictable lateral platform motion, we apply laser-intensity noise that varies up to 20% from pulse-to-pulse. Our robust control solution maintains performant sensing, while the utility of conventional pulses collapses. By measuring local gravity, we show that our robust p...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
Quantum sensors utilising atom interferometry offer new perspectives for future gravity missions. Th...
We report the demonstration of a sensitive absolute gravity gradiometer based on light-pulse atom in...
Exploiting the quantum nature of atoms through the use of matter-wave interferometry has lead to the...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
Atom interferometric sensors can enable extremely precise measurements of inertial motion and extern...
Light pulse atom interferometers have demonstrated remarkable sensitivity and stability for accelera...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
Quantum sensors utilising atom interferometry offer new perspectives for future gravity missions. Th...
We report the demonstration of a sensitive absolute gravity gradiometer based on light-pulse atom in...
Exploiting the quantum nature of atoms through the use of matter-wave interferometry has lead to the...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
20 pages, 8 figuresInternational audienceIn this paper, we show that an atom interferometer inertial...
Atom interferometric sensors can enable extremely precise measurements of inertial motion and extern...
Light pulse atom interferometers have demonstrated remarkable sensitivity and stability for accelera...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceQuantum technology based on cold-atom interferometers is showing great promise...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
International audienceWe present our the construction of an atom interferometer for inertial sensing...
Quantum sensors utilising atom interferometry offer new perspectives for future gravity missions. Th...
We report the demonstration of a sensitive absolute gravity gradiometer based on light-pulse atom in...