Artificial gauge fields for neutral particles such as photons, recently attracted a lot of attention in various fields ranging from photonic crystals to ultracold atoms in optical lattices to optomechanical arrays. Here we point out that, among all implementations of gauge fields, the optomechanical setting allows for the most natural extension where the gauge field becomes dynamical. The mechanical oscillation phases determine the effective artificial magnetic field for the photons, and once these phases are allowed to evolve, they respond to the flow of photons in the structure. We discuss a simple three-site model where we identify four different regimes of the gauge-field dynamics. Furthermore, we extend the discussion to a two-dimensio...
Recent progress in optomechanical systems may soon allow the realization of optomechanical arrays, i...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Static synthetic magnetic fields give rise to phenomena including the Lorentz force and the quantum ...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
Optomechanical systems couple light to the motion of nanomechanical objects. Intriguing new effects ...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
We show that the effective gauge field for photons provides a versatile platform for controlling the...
We consider a generic optomechanical system, consisting of a driven optical cavity and a movable mir...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. Such op...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
We develop a theory of artificial gauge fields in photon fluids for the cases of both second-order a...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
Recent progress in optomechanical systems may soon allow the realization of optomechanical arrays, i...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...
Static synthetic magnetic fields give rise to phenomena including the Lorentz force and the quantum ...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
Optomechanical systems couple light to the motion of nanomechanical objects. Intriguing new effects ...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
We show that the effective gauge field for photons provides a versatile platform for controlling the...
We consider a generic optomechanical system, consisting of a driven optical cavity and a movable mir...
The motion of micro- and nanomechanical resonators can be coupled to electromagnetic fields. Such op...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
Recent experimental developments have brought into focus optomechanical systems containing multiple ...
We develop a theory of artificial gauge fields in photon fluids for the cases of both second-order a...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
Recent progress in optomechanical systems may soon allow the realization of optomechanical arrays, i...
Two-photon coherent states are one of the main building pillars of non-linear and quantum optics. It...
Vacuum fluctuations of the electromagnetic field are a direct manifestation of quantum effects. The ...