We present a quantum theory of feedback in which the homodyne photocurrent alters the dynamics of the source cavity. To the nonlinear stochastic (Ito) evolution of the conditioned system state we add a feedback term linear in the instantaneous stochastic (Stratonovich) photocurrent. Averaging over the photocurrent gives a feedback master equation which has the desired driftlike term, plus a diffusionlike term. We apply the model to phase locking a regularly pumped laser, and show that under ideal conditions the noise spectra of the output light exhibit perfect squeezing on resonance
We solve exactly the non-Markovian dynamics of a cavity mode in the presence of a feedback loop base...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Amplitude-squeezed states are generated from a room-temperature semiconductor laser using a combinat...
We present the quantum theory of optical cavity feedback mediated by homodyne detection, with an arb...
We show that amplitude-squeezed states may be produced by driving a feedback-controlled cavity with ...
A general theory of quantum-limited feedback for continuously monitored systems is presented. Two ap...
A quantum analysis of the above-threshold intensity fluctuations in a nondegenerate parametric oscil...
The linear stochastic Schrodinger equation of a cavity mode subject to a homodyne measurement and to...
All-optical feedback can be effected by putting the output of a source cavity through a Faraday isol...
We present the theory of a laser in which the transmittivity of one output mirror is controlled by a...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We present a protocol for deterministic generation of Fock states and Schroedinger cat-like states i...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
We investigate the possibilities of preserving and manipulating the coherence of atomic two-level sy...
We solve exactly the non-Markovian dynamics of a cavity mode in the presence of a feedback loop base...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Amplitude-squeezed states are generated from a room-temperature semiconductor laser using a combinat...
We present the quantum theory of optical cavity feedback mediated by homodyne detection, with an arb...
We show that amplitude-squeezed states may be produced by driving a feedback-controlled cavity with ...
A general theory of quantum-limited feedback for continuously monitored systems is presented. Two ap...
A quantum analysis of the above-threshold intensity fluctuations in a nondegenerate parametric oscil...
The linear stochastic Schrodinger equation of a cavity mode subject to a homodyne measurement and to...
All-optical feedback can be effected by putting the output of a source cavity through a Faraday isol...
We present the theory of a laser in which the transmittivity of one output mirror is controlled by a...
Quantum feedback can stabilize a two-level atom against decoherence (spontaneous emission), putting ...
We present a protocol for deterministic generation of Fock states and Schroedinger cat-like states i...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
International audienceA feedback scheme, stabilizing an arbitrary photon-number state in a microwave...
We investigate the possibilities of preserving and manipulating the coherence of atomic two-level sy...
We solve exactly the non-Markovian dynamics of a cavity mode in the presence of a feedback loop base...
Quantum correlations between imprecision and backaction are a hallmark of continuous linear measurem...
Amplitude-squeezed states are generated from a room-temperature semiconductor laser using a combinat...