Two close parallel mirrors attract due to a small force (Casimir effect) originating from the quantum vacuum fluctuations of the electromagnetic field. These vacuum fluctuations can also induce motional forces exerted upon one mirror when the other one moves. Here, we consider an optomechanical system consisting of two vibrating mirrors constituting an optical resonator. We find that motional forces can determine noticeable coupling rates between the two spatially separated vibrating mirrors. We show that, by tuning the two mechanical oscillators into resonance, energy is exchanged between them at the quantum level. This coherent motional coupling is enabled by the exchange of virtual photon pairs, originating from the dynamical Casimir eff...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. Such op...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
Coupling electromagnetic waves in a cavity and mechanical vibrations via the radiation pressure of p...
We study the dynamical Casimir effect using a fully quantum-mechanical description of both the cavit...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
We study the situation where two point like mirrors are placed in the vacuum state of a scalar field...
We study the situation where two point like mirrors are placed in the vacuum state of a scalar field...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
In this dissertation, I theoretically investigate the open system dynamics of cavity optomechanical ...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
We study a quantum model of dynamical Casimir effect in an optical cavity enclosed by a freely movin...
Optomechanical systems exploit the interaction between the optical radiation field and mechanical re...
The dynamical Casimir effect is an intriguing phenomenon in which photons are generated from vacuum ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. Such op...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
Coupling electromagnetic waves in a cavity and mechanical vibrations via the radiation pressure of p...
We study the dynamical Casimir effect using a fully quantum-mechanical description of both the cavit...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
We study the situation where two point like mirrors are placed in the vacuum state of a scalar field...
We study the situation where two point like mirrors are placed in the vacuum state of a scalar field...
We demonstrate an optomechanical microresonator in which optical and mechanical degrees of freedom e...
In this dissertation, I theoretically investigate the open system dynamics of cavity optomechanical ...
This dissertation aims to investigate systems in which several optical and mechanical degrees of fre...
We give a theoretical description of a coherently driven optomechanical system with a single added p...
We study a quantum model of dynamical Casimir effect in an optical cavity enclosed by a freely movin...
Optomechanical systems exploit the interaction between the optical radiation field and mechanical re...
The dynamical Casimir effect is an intriguing phenomenon in which photons are generated from vacuum ...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. Such op...
Optical laser fields have been widely used to achieve quantum control over the motional and internal...
Coupling electromagnetic waves in a cavity and mechanical vibrations via the radiation pressure of p...