A novel time-domain scheme, based on the slow-wave variation approach and computation of the second time derivative for the scalar two-dimensional wave equation, is presented. This scheme permits the simulation of problems involving very wide bandwidth spectra and allows one to use coarser spatial meshes and larger time steps than other reported approaches.13431131
Recently, a new variant of FDTD method known as High Speed Low Order FDTD (HSLO-FDTD) shows to solve...
Abstract. Considered are numerical integration schemes for nondissipative dynamical systems in which...
The finite volume time-domain method is recast in a large time step (LTS) version to solve the time-...
A new time-domain numerical approach for two-dimensional vectorial wave equation solutions based on ...
The performance of the recently developed time-domain beam-propagation methods (TD-BPMs) is compared...
A time-domain simulator of integrated optical structures containing second-order nonlinearities is p...
A spectral collocation multi-domain scheme is developed for the accurate and efficient time-domain s...
A vectorial time-domain simulator of integrated optical structures containing second order nonlinear...
In this paper, a numerical simulation by a new high speed low order FDTD (HSLO-FDTD) method will be ...
A new simulation tool called ‘Aurora’, specifically developed to efficiently simulate highly complex...
© 2006 IEEE.This is a a joint IEEE/OSA publication. The definitive version of this paper is availabl...
A new technique to model the behavior of pulsed optical beams in waveguides is proposed and analyzed...
This paper discusses numerical analysis methods for different geometrical features that have limited...
Abstract — Nonlinear pulse propagation studies for microwave and photonics applications are known to...
Abstract—Two numerical methodologies based on the finite-dif-ference time-domain (FDTD) technique ar...
Recently, a new variant of FDTD method known as High Speed Low Order FDTD (HSLO-FDTD) shows to solve...
Abstract. Considered are numerical integration schemes for nondissipative dynamical systems in which...
The finite volume time-domain method is recast in a large time step (LTS) version to solve the time-...
A new time-domain numerical approach for two-dimensional vectorial wave equation solutions based on ...
The performance of the recently developed time-domain beam-propagation methods (TD-BPMs) is compared...
A time-domain simulator of integrated optical structures containing second-order nonlinearities is p...
A spectral collocation multi-domain scheme is developed for the accurate and efficient time-domain s...
A vectorial time-domain simulator of integrated optical structures containing second order nonlinear...
In this paper, a numerical simulation by a new high speed low order FDTD (HSLO-FDTD) method will be ...
A new simulation tool called ‘Aurora’, specifically developed to efficiently simulate highly complex...
© 2006 IEEE.This is a a joint IEEE/OSA publication. The definitive version of this paper is availabl...
A new technique to model the behavior of pulsed optical beams in waveguides is proposed and analyzed...
This paper discusses numerical analysis methods for different geometrical features that have limited...
Abstract — Nonlinear pulse propagation studies for microwave and photonics applications are known to...
Abstract—Two numerical methodologies based on the finite-dif-ference time-domain (FDTD) technique ar...
Recently, a new variant of FDTD method known as High Speed Low Order FDTD (HSLO-FDTD) shows to solve...
Abstract. Considered are numerical integration schemes for nondissipative dynamical systems in which...
The finite volume time-domain method is recast in a large time step (LTS) version to solve the time-...