Reservoir engineering enables the robust and unconditional preparation of pure quantum states in noisy environments. We show how a family of nonclassical states of a mechanical oscillator can be stabilized in a cavity that is parametrically coupled to both the mechanical displacement and the displacement squared. The cavity is driven with three tones, on the red sideband, on the cavity resonance, and on the second blue sideband. The states so stabilized are (squeezed and displaced) superpositions of a finite number of phonons. They show the unique feature of encompassing two prototypes of nonclassicality for bosonic systems: by adjusting the strength of the drives, one can in fact move from a single-phonon- to a Schrödinger-cat-like state. ...
We present a method to implement two-phonon interactions between mechanical resonators and spin qubi...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
International audienceWhile dissipation is widely considered to be harmful for quantum coherence, it...
In this paper we propose a scheme for the generation of a nonclassical non-Gaussian motional state o...
Abstract: We propose an engineered reservoir inducing the relaxation of a cavity field towards non-c...
Cavity-optomechanics is an ideal platform for the generation non-Gaussian quantum states due to the ...
We discuss how large amounts of steady-state quantum squeezing (beyond 3 dB) of a mechanical resonat...
Superconducting circuits provide an architecture upon which cavity quantum electrodynamics (QED) can...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Schr\"{o}dinger cat states, consisting of superpositions of macroscopically distinct states, provide...
International audienceWe analyze a quantum reservoir engineering method, originally introduced by Sa...
We describe how a quantum system composed of a cavity field interacting with a movable mirror can be...
We show that preparation of nonclassical states of a mechanical resonator with close-to-one fidelity...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Quantum optomechanics uses optical means to generate and manipulate quantum states of motion of mech...
We present a method to implement two-phonon interactions between mechanical resonators and spin qubi...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
International audienceWhile dissipation is widely considered to be harmful for quantum coherence, it...
In this paper we propose a scheme for the generation of a nonclassical non-Gaussian motional state o...
Abstract: We propose an engineered reservoir inducing the relaxation of a cavity field towards non-c...
Cavity-optomechanics is an ideal platform for the generation non-Gaussian quantum states due to the ...
We discuss how large amounts of steady-state quantum squeezing (beyond 3 dB) of a mechanical resonat...
Superconducting circuits provide an architecture upon which cavity quantum electrodynamics (QED) can...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Schr\"{o}dinger cat states, consisting of superpositions of macroscopically distinct states, provide...
International audienceWe analyze a quantum reservoir engineering method, originally introduced by Sa...
We describe how a quantum system composed of a cavity field interacting with a movable mirror can be...
We show that preparation of nonclassical states of a mechanical resonator with close-to-one fidelity...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Quantum optomechanics uses optical means to generate and manipulate quantum states of motion of mech...
We present a method to implement two-phonon interactions between mechanical resonators and spin qubi...
We propose a protocol for coherently transferring non-Gaussian quantum states from an optical field ...
International audienceWhile dissipation is widely considered to be harmful for quantum coherence, it...