We solve exactly the non-Markovian dynamics of a cavity mode in the presence of a feedback loop based on homodyne measurements, in the case of a non-zero feedback delay time. With an appropriate choice of the feedback parameters, this scheme is able to significantly increase the decoherence time of the cavity mode, even for delay times not much smaller than the decoherence time itself
This thesis discusses the dynamics of quantum-optical systems located in complex, non-markovian phot...
We apply the time-delayed Pyragas control scheme to the dissipative Dicke model via a modulation of ...
A quantum-nondemolition (QND) measurement is one which does not disturb the quantity it measures. An...
We present the quantum theory of optical cavity feedback mediated by homodyne detection, with an arb...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
A general theory of quantum-limited feedback for continuously monitored systems is presented. Two ap...
We present a quantum theory of feedback in which the homodyne photocurrent alters the dynamics of th...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
In this article we reconsider a version of quantum trajectory theory based on the stochastic Schröd...
Coherent time‐delayed feedback allows the control of a quantum system and its partial stabilization ...
International audienceWe consider a controlled quantum system whose finite dimensional state is gove...
We experimentally analyze the behavior of a non-Markovian bistable system with noise, using a vertic...
We consider a quantum emitter (“atom”) radiating in a one-dimensional photonic waveguide in the pres...
It is well known that quantum feedback can alter the dynamics of open quantum systems dramatically. ...
This thesis discusses the dynamics of quantum-optical systems located in complex, non-markovian phot...
We apply the time-delayed Pyragas control scheme to the dissipative Dicke model via a modulation of ...
A quantum-nondemolition (QND) measurement is one which does not disturb the quantity it measures. An...
We present the quantum theory of optical cavity feedback mediated by homodyne detection, with an arb...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
A general theory of quantum-limited feedback for continuously monitored systems is presented. Two ap...
We present a quantum theory of feedback in which the homodyne photocurrent alters the dynamics of th...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
In this article we reconsider a version of quantum trajectory theory based on the stochastic Schröd...
Coherent time‐delayed feedback allows the control of a quantum system and its partial stabilization ...
International audienceWe consider a controlled quantum system whose finite dimensional state is gove...
We experimentally analyze the behavior of a non-Markovian bistable system with noise, using a vertic...
We consider a quantum emitter (“atom”) radiating in a one-dimensional photonic waveguide in the pres...
It is well known that quantum feedback can alter the dynamics of open quantum systems dramatically. ...
This thesis discusses the dynamics of quantum-optical systems located in complex, non-markovian phot...
We apply the time-delayed Pyragas control scheme to the dissipative Dicke model via a modulation of ...
A quantum-nondemolition (QND) measurement is one which does not disturb the quantity it measures. An...