Correlated photons are essential sources for quantum information processing. We propose a practical scheme to generate pairs of correlated photons in a controllable fashion from a double-cavity optomechanical system, where the variable optomechanical coupling strength makes it possible to tune the photon correlation at our will. The key operation is based on the repulsive or attractive interaction between the two photons intermediated by the mechanical resonator. The present protocol could provide a potential approach to coherent control of the photon correlation using the optomechanical cavity
We present schemes that create entanglement between photons and phonons in an optomechanical system....
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We study theoretically the squeezing spectrum and second-order correlation function of the output li...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
Optomechanical systems typically use light to control the quantum state of a mechanical resonator. I...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
The pairwise quantum correlations in a tripartite optomechanical system comprising a mechanical mode...
We study the transfer of quantum correlations between two movable mirrors of two Fabry-Pérot cavitie...
Frequency-resolved photon correlations have proven to be a useful resource to unveil nonlinearities ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
We study the photon blockade effect in a mechanical engineered quadratic optomechanical system. It i...
We study single photon optomechanics conditioned on photon counting events. By selecting only detect...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We study theoretically the squeezing spectrum and second-order correlation function of the output li...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
Optomechanical systems typically use light to control the quantum state of a mechanical resonator. I...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
The pairwise quantum correlations in a tripartite optomechanical system comprising a mechanical mode...
We study the transfer of quantum correlations between two movable mirrors of two Fabry-Pérot cavitie...
Frequency-resolved photon correlations have proven to be a useful resource to unveil nonlinearities ...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
We study the photon blockade effect in a mechanical engineered quadratic optomechanical system. It i...
We study single photon optomechanics conditioned on photon counting events. By selecting only detect...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
Cavity optomechanics represents a flexible platform for the implementation of quantum technologies, ...
We present schemes that create entanglement between photons and phonons in an optomechanical system....
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We study theoretically the squeezing spectrum and second-order correlation function of the output li...