We study the sensitivity of light dynamics to the internal phase of propagating pulses in the two types of PT-symmetric models. The first is a waveguide array with an embedded pair of waveguides with gain and loss, called PT-coupler, and the second is a planar coupler which models a chain of PT-symmetric couplers. For the first model we investigate the soliton scattering on the mode localized on the coupler, while for second model we study the collision of two breathers. For both models we find that the light dynamics is sensitive to the internal phases of the interacting pulses. Particularly, the PT-symmetry breaking can take place or not, depending on the internal phases of two signals having identical other parameters
One of the challenges of the modern photonics is to develop all-optical devices enabling increased s...
We study the interaction of a soliton in a parity-time (PT) symmetric coupler which has local pertur...
Using the Maxwell-Bloch equations for resonantly absorbing and amplifying media, we study the tempor...
We study spatial and temporal solitons in the PT symmetric coupler with gain in one waveguide and lo...
We review our recent progress in the study of nonlinear photonic systems with balanced gain and loss...
Families of analytical solutions are found for symmetric and antisymmetric solitons in the dual-core...
We review our recent progress in the study of nonlinear photonic systems with balanced gain and loss...
We study spatial and temporal solitons in the PT symmetric coupler with gain in one waveguide and lo...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We reveal a generic connection between the effect of time reversals and nonlinear wave dynamics in s...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We considered the modulational instability of continuous-wave backgrounds, and the related generatio...
We consider parity-time (PT) symmetric arrays formed by N optical waveguides with gain and N wavegui...
Photonic mesh lattices provide a versatile experimental platform for studying light propagation in a...
One of the challenges of the modern photonics is to develop all-optical devices enabling increased s...
We study the interaction of a soliton in a parity-time (PT) symmetric coupler which has local pertur...
Using the Maxwell-Bloch equations for resonantly absorbing and amplifying media, we study the tempor...
We study spatial and temporal solitons in the PT symmetric coupler with gain in one waveguide and lo...
We review our recent progress in the study of nonlinear photonic systems with balanced gain and loss...
Families of analytical solutions are found for symmetric and antisymmetric solitons in the dual-core...
We review our recent progress in the study of nonlinear photonic systems with balanced gain and loss...
We study spatial and temporal solitons in the PT symmetric coupler with gain in one waveguide and lo...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We reveal a generic connection between the effect of time reversals and nonlinear wave dynamics in s...
We study the light propagation in z-varying local parity-time symmetric coupled systems. We show tha...
We considered the modulational instability of continuous-wave backgrounds, and the related generatio...
We consider parity-time (PT) symmetric arrays formed by N optical waveguides with gain and N wavegui...
Photonic mesh lattices provide a versatile experimental platform for studying light propagation in a...
One of the challenges of the modern photonics is to develop all-optical devices enabling increased s...
We study the interaction of a soliton in a parity-time (PT) symmetric coupler which has local pertur...
Using the Maxwell-Bloch equations for resonantly absorbing and amplifying media, we study the tempor...