We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator and an optical cavity field to generate in a heralded way a single quantum of mechanical motion (a Fock state). Starting with the oscillator close to its ground state, a laser pumping the upper motional sideband produces correlated photon-phonon pairs via optomechanical parametric down-conversion. Subsequent detection of a single scattered Stokes photon projects the macroscopic oscillator into a single-phonon Fock state. The nonclassical nature of this mechanical state can be demonstrated by applying a readout laser on the lower sideband to map the phononic state to a photonic mode and performing an autocorrelation measurement. Our approach pro...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
In cavity optomechanics, nanomechanical motion couples to a localized optical mode. The regime of si...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
In the field of cavity optomechanics, proposals for quantum nondemolition (QND) measurements of phon...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
We show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
In cavity optomechanics, nanomechanical motion couples to a localized optical mode. The regime of si...
We describe a system composed of two coupled optical cavity modes with a coupling modulated by a bul...
In the field of cavity optomechanics, proposals for quantum nondemolition (QND) measurements of phon...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
The investigation of macroscopic quantum phenomena is a current active area of research that offers ...
This thesis concentrates on generating and measuring non-classical states of mechanical oscillators ...
Quantum optical measurement techniques offer a rich avenue for quantum control of mechanical oscilla...
An exciting scientific goal, common to many fields of research, is the development of ever-larger ph...