We consider an electromechanical system in which a microwave cavity is coupled to a mechanical resonator, with a mechanical frequency twice the microwave frequency. In this regime, the effective photon-phonon interaction is equivalent to that of a degenerate parametric amplifier, instead of the typical radiation pressure interaction. If the mechanical resonator is strongly driven, it undergoes a phase transition to a state in which the energy pumped into the mechanical mode is entirely converted to the photonic mode. Quantum fluctuations smear this phase transition. We describe these effects with a steady-state Fokker-Planck equation in the complex P representation and compute the photonic field intensity and quadrature variances, as well a...
Measuring the quantum dynamics of a mechanical system, when few phonons are involved, remains a chal...
QC 351 A7 no. 31 v2The quantum theory of noise plays a very important role in the laser and optical ...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
We consider an electromechanical system in which a microwave cavity is coupled to a mechanical reson...
The promise of innovative applications has triggered the development of many modern technologies cap...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
International audienceWe explore the nonlinear dynamics of a cavity optomechanical system. Our reali...
Cavity optomechanical phenomena, such as cooling, amplification, or optomechanically induced transpa...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
Measuring the quantum dynamics of a mechanical system, when few phonons are involved, remains a chal...
QC 351 A7 no. 31 v2The quantum theory of noise plays a very important role in the laser and optical ...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
We consider an electromechanical system in which a microwave cavity is coupled to a mechanical reson...
The promise of innovative applications has triggered the development of many modern technologies cap...
In this thesis, I present recent studies of cavity optomechanical physics using superconducting circ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. This al...
We develop a systematic theory of quantum fluctuations in the driven optical parametric oscillator, ...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Microwave optomechanical circuits have been demonstrated to be powerful tools for both exploring fun...
In recent decades, the laws of thermodynamics have been pushed down to smaller and smaller scales, w...
International audienceWe explore the nonlinear dynamics of a cavity optomechanical system. Our reali...
Cavity optomechanical phenomena, such as cooling, amplification, or optomechanically induced transpa...
We analyze quantum effects occurring in optomechanical systems where the coupling between an optical...
Measuring the quantum dynamics of a mechanical system, when few phonons are involved, remains a chal...
QC 351 A7 no. 31 v2The quantum theory of noise plays a very important role in the laser and optical ...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...