Multiphonon state plays an important role in quantum information processing and quantum metrology. Here we propose a scheme to realize dynamical emission of phonon pairs based on the technique of stimulated Raman adiabatic passage in a single cavity optomechanical system, where the optical cavity is driven by two Gaussian pulse lasers. By exploring quantum trajectories of the state populations and the average phonon number, we find that the dynamical phonon-pair emission can be realized under the appropriate parameter conditions and is tunable by controlling the time interval between the consecutive pulses of pump lasers. In particular, the numerical results for the standard and generalized second-order correlation functions of the mechanic...
Quantum information can be stored in micromechanical resonators, encoded as quanta of vibration know...
Multi-phonon physics is an emerging field that serves as a test bed for fundamental quantum physics ...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Quantum control of phonons has become a focus of development for quantum technologies. Here, we prop...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
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 show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Optomechanical systems are rapidly becoming one of the most promising platforms for observing quantu...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
We describe an optomechanical system in which the mean phonon number of a single mechanical mode con...
We propose a scheme to realize the two-phonon blockade effect in a quadratically coupled optomechani...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
Quantum information can be stored in micromechanical resonators, encoded as quanta of vibration know...
Multi-phonon physics is an emerging field that serves as a test bed for fundamental quantum physics ...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Quantum control of phonons has become a focus of development for quantum technologies. Here, we prop...
There exists a tight relation between single-phonon and -photon source devices with the phonon and p...
Owing to their long-lifetimes at cryogenic temperatures, mechanical oscillators are recognized as an...
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 show how to use the radiation pressure optomechanical coupling between a mechanical oscillator an...
Optomechanical systems are rapidly becoming one of the most promising platforms for observing quantu...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
We describe an optomechanical system in which the mean phonon number of a single mechanical mode con...
We propose a scheme to realize the two-phonon blockade effect in a quadratically coupled optomechani...
We describe how strong resonant interactions in multimode optomechanical systems can be used to indu...
Quantum information can be stored in micromechanical resonators, encoded as quanta of vibration know...
Multi-phonon physics is an emerging field that serves as a test bed for fundamental quantum physics ...
Connecting microwave quantum computing technologies with optical fiber necessitates the conversion o...