We study light-matter interactions in the bulk of a two-dimensional photonic lattice system, where photons are subject to the combined effect of a synthetic magnetic field and an orthogonal synthetic electric field. In this configuration, chiral waveguide modes appear in the bulk region of the lattice, in direct analogy to transverse Hall currents in electronic systems. By evaluating the non-Markovian dynamics of emitters that are coupled to those modes, we identify critical coupling conditions, under which the shape of the spontaneously emitted photons becomes almost fully symmetric. Combined with a directional, dispersionless propagation, this property enables a complete reabsorption of the photon by another distant emitter, without relyi...
AbstractThe optical modes of photonic structures are the so-called TE and TM modes that bring intrin...
Engineering photon emission and scattering is central to modern photonics applications ranging from ...
Chiral quantum optics has become a burgeoning field due to its potential applications in quantum net...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
10 pags., 8 figs.Chiral quantum optics has become a burgeoning field due to its potential applicatio...
Chiral emission, where the handedness of a transition dipole determines the direction in which a pho...
In quantum optics, the electromagnetic character of light is mostly reduced to its electric componen...
Photon-mediated interaction between quantum emitters in engineered photonic baths is an emerging are...
Engineering pseudo-spin and valley degrees of freedom using quantum spin Hall and valley Hall effect...
The strong chiral light-matter interaction is crucial for various important fields such as chiral op...
AbstractThe optical modes of photonic structures are the so-called TE and TM modes that bring intrin...
Engineering photon emission and scattering is central to modern photonics applications ranging from ...
Chiral quantum optics has become a burgeoning field due to its potential applications in quantum net...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
Light escape from an optical waveguide side-coupled to a waveguide lattice provides a photonic analo...
10 pags., 8 figs.Chiral quantum optics has become a burgeoning field due to its potential applicatio...
Chiral emission, where the handedness of a transition dipole determines the direction in which a pho...
In quantum optics, the electromagnetic character of light is mostly reduced to its electric componen...
Photon-mediated interaction between quantum emitters in engineered photonic baths is an emerging are...
Engineering pseudo-spin and valley degrees of freedom using quantum spin Hall and valley Hall effect...
The strong chiral light-matter interaction is crucial for various important fields such as chiral op...
AbstractThe optical modes of photonic structures are the so-called TE and TM modes that bring intrin...
Engineering photon emission and scattering is central to modern photonics applications ranging from ...
Chiral quantum optics has become a burgeoning field due to its potential applications in quantum net...