A new method for solving the scalar Helmholtz equation to obtain the propagation of total fields or beams through general optical waveguiding structures is presented. The method is based on converting the partial differential equation into a matrix total differential equation using a collocation method and then solving the resulting equation through standard numerical methods. A comparison with the propagating-beam method shows that the present method has better accuracy and is more efficient numerically
Practical applications of integrated optics require understanding of light propagation in dielectric...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...
A method for obtaining total field solutions from the Helmholtz equation for optical waveguiding str...
We compare the beam-propagation method (BPM) and the collocation method for the total field propagat...
We compare the beam-propagation method (BPM) and the collocation method for the total field propagat...
A new method for obtaining total field solutions and propagation constants for planar optical wavegu...
The collocation method developed earlier for propagating beams through optical waveguides is unstabl...
The collocation method developed earlier for propagating beams through optical waveguides is unstabl...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
Abstract. This paper presents a systematic method to derive Beam Propagation Mod-els for optical wav...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
Nous décrivons des méthodes pour obtenir l'information nécessaire au calcul des constantes de propag...
Practical applications of integrated optics require understanding of light propagation in dielectric...
Practical applications of integrated optics require understanding of light propagation in dielectric...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...
A method for obtaining total field solutions from the Helmholtz equation for optical waveguiding str...
We compare the beam-propagation method (BPM) and the collocation method for the total field propagat...
We compare the beam-propagation method (BPM) and the collocation method for the total field propagat...
A new method for obtaining total field solutions and propagation constants for planar optical wavegu...
The collocation method developed earlier for propagating beams through optical waveguides is unstabl...
The collocation method developed earlier for propagating beams through optical waveguides is unstabl...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
Abstract. This paper presents a systematic method to derive Beam Propagation Mod-els for optical wav...
International audienceThis paper presents a systematic method to derive Beam Propagation Models for ...
Nous décrivons des méthodes pour obtenir l'information nécessaire au calcul des constantes de propag...
Practical applications of integrated optics require understanding of light propagation in dielectric...
Practical applications of integrated optics require understanding of light propagation in dielectric...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...
[[abstract]]In this paper, we propose a different method to study wave propagation in longitudinally...