The cubic nonlinear Helmholtz equation with third and fourth order dispersion and non-Kerr nonlinearity like the self steepening and the self frequency shift is considered. This model describes nonparaxial ultrashort pulse propagation in an optical medium in the presence of spatial dispersion originating from the failure of slowly varying envelope approximation. We show that this system admits periodic (elliptic) solitary waves with dipole structure within a period and also transition from dipole to quadrupole structure within a period depending on the value of the modulus parameter of Jacobi elliptic function. The parametric conditions to be satisfied for the existence of these solutions are given. The effect of the nonparaxial parameter o...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...
Exact chirped elliptic wave solutions are obtained within the framework of coupled cubic nonlinear H...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...
We study the propagation of few-cycle optical solitons in nonlinear media with an anomalous, but oth...
We consider the propagation of ultrashort optical pulses in nonlinear fibers and suggest a new theor...
We present new type of Dark-in-the-Bright solution also called dipole soliton for the higher order n...
We study the propagation of few-cycle optical solitons in nonlinear media with an anomalous, but oth...
Exact chirped elliptic wave solutions are obtained within the framework of coupled cubic nonlinear H...
We study the dynamics of femtosecond light pulse propagation in a cubic-quintic medium exhibiting di...
We present the first detailed account of modelling pulses in Helmholtz-type nonlinear systems with b...
We propose a novel nonlinear Helmholtz equation for modelling pulses in optical waveguides. Exact an...
A nonlinear Helmholtz equation for optical materials with regimes of power-law type of nonlinearity ...
In this paper, we propose the use of ultranarrow soliton beams in miniaturized nonlinear optical dev...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...
Exact chirped elliptic wave solutions are obtained within the framework of coupled cubic nonlinear H...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...
We study the propagation of few-cycle optical solitons in nonlinear media with an anomalous, but oth...
We consider the propagation of ultrashort optical pulses in nonlinear fibers and suggest a new theor...
We present new type of Dark-in-the-Bright solution also called dipole soliton for the higher order n...
We study the propagation of few-cycle optical solitons in nonlinear media with an anomalous, but oth...
Exact chirped elliptic wave solutions are obtained within the framework of coupled cubic nonlinear H...
We study the dynamics of femtosecond light pulse propagation in a cubic-quintic medium exhibiting di...
We present the first detailed account of modelling pulses in Helmholtz-type nonlinear systems with b...
We propose a novel nonlinear Helmholtz equation for modelling pulses in optical waveguides. Exact an...
A nonlinear Helmholtz equation for optical materials with regimes of power-law type of nonlinearity ...
In this paper, we propose the use of ultranarrow soliton beams in miniaturized nonlinear optical dev...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
The short-pulse equation (SPE) was first derived for ultra short pulse propagating in nonlinear opti...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...
Exact chirped elliptic wave solutions are obtained within the framework of coupled cubic nonlinear H...
The widely used approach to study the beam propagation in Kerr media is based on the slowly varying ...