The induction of synthetic magnetic fields on lattice structures allows to effectively control their localization and transport properties. In this work, we generate effective $\pi$ magnetic fluxes on a multi-orbital diamond lattice, where first ($S$) and second ($P$) order modes effectively interact. We implement a $z$-scan method on femtosecond laser written photonic lattices and experimentally observe Aharonov-Bohm caging for $S$ and $P$ modes, as a consequence of a band transformation and the emergence of a spectrum composed of three degenerated flat bands. As an application, we demonstrate a perfect control of the dynamics, where we translate an input excitation across the lattice in a completely linear and controlled way. Our model, b...
Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattic...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
We study the properties of nonlinear Bloch waves in a diamond chain waveguide lattice in the presenc...
We report on the experimental realization of a uniform synthetic magnetic flux and the observation o...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Transport inhibition via Anderson localization is ubiquitous in disordered periodic lattices. Howeve...
We study the influence of mean-field cubic nonlinearity on Aharonov-Bohm caging in a diamond lattice...
Spatial non-uniformity in tight-binding models serves as a source of rich phenomena. In this paper, ...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
The linear diamond chain with fine-tuned effective magnetic flux has a completely flat energy spectr...
We study a system of a few ultracold bosons loaded into the states with orbital angular momentum $l=...
Recent years have witnessed intense research activities to effectively control the flow of photons u...
Topological photonics holds the promise for enhanced robustness of light localization and propagatio...
We present a method of locally inverting the sign of the coupling term in tight-binding systems, by ...
Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattic...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
We study the properties of nonlinear Bloch waves in a diamond chain waveguide lattice in the presenc...
We report on the experimental realization of a uniform synthetic magnetic flux and the observation o...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Transport inhibition via Anderson localization is ubiquitous in disordered periodic lattices. Howeve...
We study the influence of mean-field cubic nonlinearity on Aharonov-Bohm caging in a diamond lattice...
Spatial non-uniformity in tight-binding models serves as a source of rich phenomena. In this paper, ...
Recently, there has been growing interest in the creation of artificial magnetic fields for uncharge...
The linear diamond chain with fine-tuned effective magnetic flux has a completely flat energy spectr...
We study a system of a few ultracold bosons loaded into the states with orbital angular momentum $l=...
Recent years have witnessed intense research activities to effectively control the flow of photons u...
Topological photonics holds the promise for enhanced robustness of light localization and propagatio...
We present a method of locally inverting the sign of the coupling term in tight-binding systems, by ...
Dynamic localization (DL) of photons, i.e., the light-motion cancellation effect arising from lattic...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...