We consider the decoherence of a pseudo-spin ensemble under collective random rotations, and study, both theoretically and experimentally, how a nondestructive measurement combined with real-time feedback correction can protect the state against such a decoherence process. We theoretically characterize the feedback efficiency with different parameters --- coherence, entropy, fidelity --- and show that a maximum efficiency is reached in the weak measurement regime, when the projection of the state induced by the measurement is negligible. This article presents in detail the experimental results published in [Phys. Rev. Lett. \textbf{110}, 210503 (2013)], where the feedback scheme stabilizes coherent spin states of trapped ultra-cold atoms, a...
We show that the influence of quantum fluctuations in the electromagnetic field vacuum on a two leve...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We consider the decoherence of a pseudo-spin ensemble under collective random rotations, and study, ...
Weak measurements provide new ways to observe and control quantum systems. Here we use weak non-dest...
International audienceWe demonstrate how to use feedback to control the internal states of trapped c...
Atom interferometry based sensors provide today the most precise measurements of time, inertial forc...
In this thesis, we describe an until now unexplored approach in the operation of atomic interferomet...
Feedback control allows a wide range of systems to be stabilized to out-of-equilibrium states. In qu...
This chapter describes recent experiments involving continuous measurement and quantum feedback cont...
© 2018 American Physical Society. The understanding of weak measurements and interaction-free measur...
Spin squeezing can increase the sensitivity of interferometric measurements of small signals in larg...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
Coherent feedback is the use of feedback loops not involving any measurements for the purpose of qua...
The problem of feedback control of quantum systems by means of weak measurements is investigated in ...
We show that the influence of quantum fluctuations in the electromagnetic field vacuum on a two leve...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We consider the decoherence of a pseudo-spin ensemble under collective random rotations, and study, ...
Weak measurements provide new ways to observe and control quantum systems. Here we use weak non-dest...
International audienceWe demonstrate how to use feedback to control the internal states of trapped c...
Atom interferometry based sensors provide today the most precise measurements of time, inertial forc...
In this thesis, we describe an until now unexplored approach in the operation of atomic interferomet...
Feedback control allows a wide range of systems to be stabilized to out-of-equilibrium states. In qu...
This chapter describes recent experiments involving continuous measurement and quantum feedback cont...
© 2018 American Physical Society. The understanding of weak measurements and interaction-free measur...
Spin squeezing can increase the sensitivity of interferometric measurements of small signals in larg...
This thesis describes quantum measurements of an ensemble of cold rubidium-87 atoms. We extend the ...
Coherent feedback is the use of feedback loops not involving any measurements for the purpose of qua...
The problem of feedback control of quantum systems by means of weak measurements is investigated in ...
We show that the influence of quantum fluctuations in the electromagnetic field vacuum on a two leve...
In this thesis I explore the use of collective spin angular momentum as a platform for quantum info...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...