Optomechanical systems typically use light to control the quantum state of a mechanical resonator. In this paper, we propose a scheme for controlling the quantum state of light using the mechanical degree of freedom as a controlled beam splitter. Preparing the mechanical resonator in non-classical states enables an optomechanical Stern–Gerlach interferometer. When the mechanical resonator has a small coherent amplitude it acts as a quantum control, entangling the optical and mechanical degrees of freedom. As the coherent amplitude of the resonator increases, we recover single photon and two-photon interference via a classically controlled beam splitter. The visibility of the two-photon interference is particularly sensitive to coherent exci...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
We consider a generic optomechanical system, consisting of a driven optical cavity and a movable mir...
We show that a cavity optomechanical system formed by a mechanical resonator simultaneously coupled ...
Optomechanical systems typically use light to control the quantum state of a mechanical resonator. I...
Cavity optomechanical systems are approaching a strong-coupling regime where the coherent dynamics o...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
We give a theoretical description of a coherently driven optomechanical system with a single added p...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
We theoretically explore a quantum memory using a single nanoparticle levitated in an optical dipole...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
Correlated photons are essential sources for quantum information processing. We propose a practical ...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
We consider a generic optomechanical system, consisting of a driven optical cavity and a movable mir...
We show that a cavity optomechanical system formed by a mechanical resonator simultaneously coupled ...
Optomechanical systems typically use light to control the quantum state of a mechanical resonator. I...
Cavity optomechanical systems are approaching a strong-coupling regime where the coherent dynamics o...
This thesis explores the possibility of controlling the quantum states of high frequency mechanical ...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
We give a theoretical description of a coherently driven optomechanical system with a single added p...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
We theoretically explore a quantum memory using a single nanoparticle levitated in an optical dipole...
Optomechanical system, a hybrid system where mechanical and optical degrees of freedom are mutually ...
Correlated photons are essential sources for quantum information processing. We propose a practical ...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
Light can transfer momentum to a mechanical oscillator via the radiation pressure force. Conversely,...
We consider a generic optomechanical system, consisting of a driven optical cavity and a movable mir...
We show that a cavity optomechanical system formed by a mechanical resonator simultaneously coupled ...