We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for a long time using a feedback scheme based on the injection of appropriately prepared atoms. We present a feedback scheme both for optical cavities, which can be continuously monitored by a photodetector, and for microwave cavities, which can be monitored only indirectly via the detection of atoms that have interacted with the cavity field. We also discuss the possibility of applying these methods for decoherence control in quantum information processing
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
International audienceFeedback loops are central to most classical control procedures. A controller ...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme able to protect the quantum states of a cavity mode against the decohering effec...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
A feedback model based on direct photodetection and micromaser-like atomic injection is proposed for...
International audienceWe propose a quantum feedback scheme for the preparation and protection of pho...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
International audienceFeedback loops are central to most classical control procedures. A controller ...
We show how an initially prepared quantum state of a radiation mode in a cavity can be preserved for...
We review the use of quantum feedback for combatting the decoherence of Schroedinger-cat-like states...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme that is able to protect the quantum states of a cavity mode against the decoheri...
We present a scheme able to protect the quantum states of a cavity mode against the decohering effec...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
A feedback model based on direct photodetection and micromaser-like atomic injection is proposed for...
International audienceWe propose a quantum feedback scheme for the preparation and protection of pho...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
An all-optical feedback scheme in which the output of a cavity mode is used to influence the dynamic...
International audienceFeedback loops are central to most classical control procedures. A controller ...