We propose a dynamically tunable nonreciprocal response for wave propagations by employing nonlinear Fano resonances. We demonstrate that the transmission contrast between waves propagating in opposite directions can be controlled by an excitation signal. In particular, the unidirectional transmission can be flipped at different time of a pulse, resembling a Fano diode with dynamical reconfigurable nonreciprocity. The key mechanism is the interaction between a linear and a nonlinear Fano resonance that allows for the tunable unidirectional wave propagation and ultrahigh transmission contrast ratio. We further present a realistic photonic example which demonstrates the properties of nonreciprocity can be dynamically manipulated using a pump ...
International audienceWe suggest and experimentally demonstrate a photonic crystal structure, where ...
We show that Fano resonances created by twoPT -symmetric nonlinear micro-resonators coupled to a wav...
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...
We consider a discrete model that describes a linear chain of particles coupled to a single-site def...
We describe the effect of symmetry breaking in a system with two coupled Fano resonators. A general ...
We present a programmable silicon photonic integrated circuit (PIC) that can be configured to show n...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
We employ an effective discrete model for the study of wave propagation in a photonic crystal wavegu...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
Violating time-reversal symmetry enables one to engineer nonreciprocal structures for isolating and ...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
Time-asymmetric state-evolution properties while encircling an exceptional point are presently of gr...
Unidirectional nonreciprocal transport is at the heart of many fundamental problems and applications...
We study linear and nonlinear transmission of photonic networks and nanoscale devices based on direc...
The control of Fano resonances is of critical importance to opto-electronic and all-optical switchin...
International audienceWe suggest and experimentally demonstrate a photonic crystal structure, where ...
We show that Fano resonances created by twoPT -symmetric nonlinear micro-resonators coupled to a wav...
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...
We consider a discrete model that describes a linear chain of particles coupled to a single-site def...
We describe the effect of symmetry breaking in a system with two coupled Fano resonators. A general ...
We present a programmable silicon photonic integrated circuit (PIC) that can be configured to show n...
A strong optical nonlinearity arises when coherent light is scattered by a semiconductor quantum dot...
We employ an effective discrete model for the study of wave propagation in a photonic crystal wavegu...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
Violating time-reversal symmetry enables one to engineer nonreciprocal structures for isolating and ...
We show that nonlinear optical processes of nanoparticles can be controlled by the presence of inter...
Time-asymmetric state-evolution properties while encircling an exceptional point are presently of gr...
Unidirectional nonreciprocal transport is at the heart of many fundamental problems and applications...
We study linear and nonlinear transmission of photonic networks and nanoscale devices based on direc...
The control of Fano resonances is of critical importance to opto-electronic and all-optical switchin...
International audienceWe suggest and experimentally demonstrate a photonic crystal structure, where ...
We show that Fano resonances created by twoPT -symmetric nonlinear micro-resonators coupled to a wav...
We report on the modeling, simulation, and experimental demonstration of complete mode crossings of ...