The cavity-optomechanical radiation pressure interaction provides the means to create entanglement between a mechanical oscillator and an electromagnetic field interacting with it. Here we show how we can utilize this entanglement within the framework of time-continuous quantum control, in order to engineer the quantum state of the mechanical system. Specifically, we analyze how to prepare a low-entropy mechanical state by (measurement-based) feedback cooling operated in the blue detuned regime, the creation of bipartite mechanical entanglement via time-continuous entanglement swapping, and preparation of a squeezed mechanical state by time-continuous teleportation. The protocols presented here are feasible in optomechanical systems exhibit...
Quantum entanglement has been actively sought in optomechanical and electromechanical systems. The s...
With the purpose of controlling the steady state of a dielectric nanosphere levitated within an opti...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
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 demonstrate the control of entanglement in a hybrid optomechanical system comprising an optical c...
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...
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We present a scheme for realizing phase-controlled entanglement in a microwave optomechanical system...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We combine the concept of Bell measurements, in which two systems are projected into a maximally ent...
We show that the closed-loop control obtained by feeding back the derivative of the signal from the ...
In this thesis we study continuous variable systems, focusing on optomechanical devices where a lase...
Quantum entanglement has been actively sought in optomechanical and electromechanical systems. The s...
With the purpose of controlling the steady state of a dielectric nanosphere levitated within an opti...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...
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 demonstrate the control of entanglement in a hybrid optomechanical system comprising an optical c...
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...
There has recently been considerable interest in the study of mechanical oscillators in the quantum ...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We present a scheme for realizing phase-controlled entanglement in a microwave optomechanical system...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We combine the concept of Bell measurements, in which two systems are projected into a maximally ent...
We show that the closed-loop control obtained by feeding back the derivative of the signal from the ...
In this thesis we study continuous variable systems, focusing on optomechanical devices where a lase...
Quantum entanglement has been actively sought in optomechanical and electromechanical systems. The s...
With the purpose of controlling the steady state of a dielectric nanosphere levitated within an opti...
We show how stationary entanglement between an optical cavity field mode and a macroscopic vibrating...