Fueling Creators with Stunning

Figure 1 From Discrete Soliton Collisions In A Waveguide Array With Saturable Nonlinearity

Digitized Switching Of A Discrete Soliton In A Cubic Nonlinear Download Scientific Diagram
Digitized Switching Of A Discrete Soliton In A Cubic Nonlinear Download Scientific Diagram

Digitized Switching Of A Discrete Soliton In A Cubic Nonlinear Download Scientific Diagram Fig. 1: typical power density plots for (a) bound state formation (p = 10, q = 0.1), (b) reflection (p = 10, q = 0.2), and (c) breather creation (p = 70, q = 0.5). in all cases, os collisions are considered, although these pictures do not vary considerably for is collisions. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of mobile breathers with high power. three main regimes are observed: breather fusion, breather reflection and breather creation.

Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram
Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram

Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram We investigate the collision dynamics of discrete soliton (ds) pair in a realistic semi in nite nonlinear waveguide array (wa) in the context of di ractive resonant radiation (difrr). depending on the initial amplitude (a 0) and wavenumber (k 0), a co moving pair of identical dss either collide elastically or merge to form a discrete breather. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of breathers with high power. three main regimes are observed: breather fusion, breather reflection and breather creation. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the ex. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of mobile breathers with high power.

Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram
Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram

Example Of A Homogeneous Waveguide Array And The Generation Of A Download Scientific Diagram We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the ex. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of mobile breathers with high power. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of breathers. Fig. 5: time evolution of the power density at the collision point (|u0| 2). the left panel corresponds to a reflection case (q = 0.3, p = 70) and the right panel to a creation case (q = 0.7, p = 70). We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows. We study the symmetric collisions of two mobile breathers solitons in a model for coupled wave guides with a saturable nonlinearity. the saturability allows the existence of breathers with high power. three main regimes are observed: breather fusion, breather reflection and breather creation.

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