A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, metallic and dielectric waveguides, is introduced and verified using both linear nondispersive and dispersive examples that have analytical predictions. Excellent accuracy results have been observed. The method is called time-domain beam-propagation method (TD-BPM) because it is similar to the classical continuous-wave BPM with additional time dependence. The explicit finite difference and the Du Fort–Frankel approaches were used to discretize the TD-BPM equation. Comparisons between these techniques are also given with the application of the perfectly matched layers as spatial boundary conditions to the Du Fort–Frankel. Then the TD-BPM was succ...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
We present a comparative assessment of time-domain approaches for modelling nonlinear optical propag...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new technique to model the behavior of pulsed optical beams in waveguides is proposed and analyzed...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
We present a comparative assessment of time-domain approaches for modelling nonlinear optical propag...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new efficient technique that models the behavior of pulsed optical beams in homogenous medium, met...
A new technique to model the behavior of pulsed optical beams in waveguides is proposed and analyzed...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
The linear time-domain beam propagation method (TD-BPM) has been extended to model the propagation o...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD–BPM) based on Padé approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
In this paper, a new nonparaxial time-domain beam-propagation method (TD-BPM) based on Pade approxim...
We present a comparative assessment of time-domain approaches for modelling nonlinear optical propag...