Recently, there has been growing interest in the creation of artificial magnetic fields for uncharged particles, such as cold atoms or photons. These efforts are partly motivated by the resulting desirable features, such as transport along edge states that is robust against backscattering. We analyze how the optomechanical interaction between photons and mechanical vibrations can be used to create artificial magnetic fields for photons on a lattice. The ingredients required are an optomechanical crystal, i.e., a free-standing photonic crystal with localized vibrational and optical modes, and two laser beams with the right pattern of phases. One of the two schemes analyzed here is based on optomechanical modulation of the links between optic...
We show that dimerization of an optomechanical crystal lattice, which leads to folding of the band d...
The induction of synthetic magnetic fields on lattice structures allows to effectively control their...
In the last several years, rapid advances have been made in the field of cavity optomechanics, in wh...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
Artificial gauge fields for neutral particles such as photons, recently attracted a lot of attention...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
Synthetic magnetism has been used to control charge neutral excitations for applications ranging fro...
A method to realize effective magnetic fields for photons in square lattices of coupled optical wave...
Static synthetic magnetic fields give rise to phenomena including the Lorentz force and the quantum ...
We propose to create an effective magnetic field for photons in photonic crystal resonator lattices ...
This paper proposes a simple setup for introducing an artificial magnetic field for neutral atoms in...
Recent progress in optomechanical systems may soon allow the realization of optomechanical arrays, i...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Collective dynamics of topological magnetic textures can be thought of as a massive particle moving ...
We show that dimerization of an optomechanical crystal lattice, which leads to folding of the band d...
The induction of synthetic magnetic fields on lattice structures allows to effectively control their...
In the last several years, rapid advances have been made in the field of cavity optomechanics, in wh...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
Artificial gauge fields for neutral particles such as photons, recently attracted a lot of attention...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
Synthetic magnetism has been used to control charge neutral excitations for applications ranging fro...
A method to realize effective magnetic fields for photons in square lattices of coupled optical wave...
Static synthetic magnetic fields give rise to phenomena including the Lorentz force and the quantum ...
We propose to create an effective magnetic field for photons in photonic crystal resonator lattices ...
This paper proposes a simple setup for introducing an artificial magnetic field for neutral atoms in...
Recent progress in optomechanical systems may soon allow the realization of optomechanical arrays, i...
Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerfu...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Collective dynamics of topological magnetic textures can be thought of as a massive particle moving ...
We show that dimerization of an optomechanical crystal lattice, which leads to folding of the band d...
The induction of synthetic magnetic fields on lattice structures allows to effectively control their...
In the last several years, rapid advances have been made in the field of cavity optomechanics, in wh...