Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattice's quasi-energy band collapse under a synthetic ac-electric-field, provides a powerful and alternative mechanism to Anderson localization for coherent light confinement. So far only low-order DLs, corresponding to weak ac-fields, have been demonstrated using curved-waveguide lattices where the waveguide's bending curvature plays the role of ac-field as required in original Dunlap-Kenkre model of DL. However, the inevitable bending losses pose a severe limitation for the observation of high-order DL. Here, we break the weak-field limitation by transferring lattice concepts from spatial to synthetic time dimensions using fiber-loop circuits an...
Photonic lattices—arrays of optical waveguides—are powerful platforms for simulating a range of phen...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
The introduction of defects in photonic lattices generally allows to control the localization and th...
Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattic...
Dynamic localization, which originates from the phenomena of particle evolution suppression under an...
Dynamic localization is the suppression of the broadening of a charged-particle wave packet as it mo...
Synthetic photonic lattices provide unique capabilities to realize theoretical concepts emerging in ...
We describe theoretically and realize experimentally Anderson localization for optical pulses in tim...
We predict a generic mechanism of wave localization at an interface between uniform artificial gauge...
Recently, a fiber optic based implementation of mesh lattices was proposed [1,2], where discrete tim...
One of concepts giving opportunities for studying of topological insulators in non-magnetic material...
We review both theoretical and experimental advances in the recently emerged field of modulated phot...
We report on a direct experimental observation of dynamic localization (DL) of light in sinusoidally...
The induction of synthetic magnetic fields on lattice structures allows to effectively control their...
We review both theoretical and experimental advances in the recently emerged field of modulated pho...
Photonic lattices—arrays of optical waveguides—are powerful platforms for simulating a range of phen...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
The introduction of defects in photonic lattices generally allows to control the localization and th...
Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattic...
Dynamic localization, which originates from the phenomena of particle evolution suppression under an...
Dynamic localization is the suppression of the broadening of a charged-particle wave packet as it mo...
Synthetic photonic lattices provide unique capabilities to realize theoretical concepts emerging in ...
We describe theoretically and realize experimentally Anderson localization for optical pulses in tim...
We predict a generic mechanism of wave localization at an interface between uniform artificial gauge...
Recently, a fiber optic based implementation of mesh lattices was proposed [1,2], where discrete tim...
One of concepts giving opportunities for studying of topological insulators in non-magnetic material...
We review both theoretical and experimental advances in the recently emerged field of modulated phot...
We report on a direct experimental observation of dynamic localization (DL) of light in sinusoidally...
The induction of synthetic magnetic fields on lattice structures allows to effectively control their...
We review both theoretical and experimental advances in the recently emerged field of modulated pho...
Photonic lattices—arrays of optical waveguides—are powerful platforms for simulating a range of phen...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
The introduction of defects in photonic lattices generally allows to control the localization and th...