A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refractive index structure is described. An arbitrary starting field is propagated along an imaginary axis using the Finite Difference Beam Propagation Method (FDBPM) based upon the Slowly Varying Envelope Approximation (SVEA). First the modes are found for the linear part of the refractive index structure. By suitably choosing the complex value of the propagation step, one mode is maximally increased in amplitude. After the nonlinearity has been put on, two methods are applied to find the modes for the nonlinear structure. One method is the same as the method used for the linear part, in the other method the propagation step is left unchanged. T...
Nous décrivons des méthodes pour obtenir l'information nécessaire au calcul des constantes de propag...
A method, based on a semivectorial finite difference scheme, is described to construct modal fields ...
A new method is presented for calculating the fundamental mode and all the higher order guided modes...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one-or two-dimensional intensity dependent refra...
A method to construct modal fields for an arbitrary one-or two-dimensional intensity dependent refra...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
Nous décrivons des méthodes pour obtenir l'information nécessaire au calcul des constantes de propag...
A method, based on a semivectorial finite difference scheme, is described to construct modal fields ...
A new method is presented for calculating the fundamental mode and all the higher order guided modes...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one- or two-dimensional intensity dependent refr...
A method to construct modal fields for an arbitrary one-or two-dimensional intensity dependent refra...
A method to construct modal fields for an arbitrary one-or two-dimensional intensity dependent refra...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
A method is described to construct modal fields for an arbitrary one- or two-dimensional refractive ...
Nous décrivons des méthodes pour obtenir l'information nécessaire au calcul des constantes de propag...
A method, based on a semivectorial finite difference scheme, is described to construct modal fields ...
A new method is presented for calculating the fundamental mode and all the higher order guided modes...