We demonstrate the control of entanglement in a hybrid optomechanical system comprising an optical cavity with a mechanical end-mirror and an intracavity Bose-Einstein condensate. Pulsed laser light (tuned within realistic experimental conditions) is shown to induce an almost sixfold increase of the atom-mirror entanglement and to be responsible for interesting dynamics between such mesoscopic systems. In order to assess the advantages offered by the proposed control technique, we compare the time-dependent dynamics of the system under constant pumping with the evolution due to the modulated laser light
Radiation pressure forces in cavity optomechanics allow for efficient cooling of vibrational modes o...
In this thesis we study continuous variable systems, focusing on optomechanical devices where a lase...
We show that the closed-loop control obtained by feeding back the derivative of the signal from the ...
We demonstrate the control of entanglement in a hybrid optomechanical system comprising an optical c...
The cavity-optomechanical radiation pressure interaction provides the means to create entanglement b...
Entangling a mechanical oscillator with an optical mode is an enticing and yet a very challenging go...
We propose a scheme for the realization of a hybrid, strongly quantum-correlated system formed of an...
We consider a cavity with a vibrating end mirror and coupled to a Bose-Einstein condensate. The cavi...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
We present a scheme to greatly enhance tripartite entanglement in an atom-optomechanical hybrid syst...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
Entanglement generation at a macroscopic scale o ers an exciting avenue to de- velop new quantum tec...
We propose effective generation of entangled and squeezed states in an optoelectromechanical system ...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
In this paper, we consider a three-mode optomechanical system, where two movable mirrors are coupled...
Radiation pressure forces in cavity optomechanics allow for efficient cooling of vibrational modes o...
In this thesis we study continuous variable systems, focusing on optomechanical devices where a lase...
We show that the closed-loop control obtained by feeding back the derivative of the signal from the ...
We demonstrate the control of entanglement in a hybrid optomechanical system comprising an optical c...
The cavity-optomechanical radiation pressure interaction provides the means to create entanglement b...
Entangling a mechanical oscillator with an optical mode is an enticing and yet a very challenging go...
We propose a scheme for the realization of a hybrid, strongly quantum-correlated system formed of an...
We consider a cavity with a vibrating end mirror and coupled to a Bose-Einstein condensate. The cavi...
We review the physics of hybrid optomechanical systems consisting of a mechanical oscillator interac...
We present a scheme to greatly enhance tripartite entanglement in an atom-optomechanical hybrid syst...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
Entanglement generation at a macroscopic scale o ers an exciting avenue to de- velop new quantum tec...
We propose effective generation of entangled and squeezed states in an optoelectromechanical system ...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
In this paper, we consider a three-mode optomechanical system, where two movable mirrors are coupled...
Radiation pressure forces in cavity optomechanics allow for efficient cooling of vibrational modes o...
In this thesis we study continuous variable systems, focusing on optomechanical devices where a lase...
We show that the closed-loop control obtained by feeding back the derivative of the signal from the ...