AbstractThe discontinuous Galerkin method has proved to be an accurate and efficient way to numerically solve many differential equations. In this paper, we extend this method to solve the time-dependent Maxwell’s equations when metamaterials and perfectly matched layers are involved. Numerical results are presented to demonstrate that our method is not only simple to implement, but also quite effective in solving Maxwell’s equations in complex media
International audienceThis work is concerned with the design of a hp-like discontinuous Galerkin (DG...
AbstractIn this paper, we discuss the time-domain metamaterial Maxwell’s equations. One major contri...
The Perfectly Matched Layer (PML) technique is an effective tool introduced by B´erenger [13] to red...
AbstractThe discontinuous Galerkin method has proved to be an accurate and efficient way to numerica...
In this paper, we develop a nodal discontinuous Galerkin method for solving the time-dependent Maxwe...
Discontinuous Galerkin Finite Element Method (DG-FEM) has been further developed in this dissertatio...
This work is devoted to the numerical analysis of time-domain linear Maxwell\u27s equations in a dis...
This dissertation investigates three different mathematical models based on the time domain Maxwell\...
The discontinuous Galerkin method (DGM) is applied to a number of problems in computational electrom...
We show in this paper how to properly discretize optimized Schwarz methods for the time-harmonic Max...
We show in this paper how to properly discretize optimized Schwarz methods for the time-harmonic Max...
International audienceThis paper reviews the main features of a high-order non-dissipative discontin...
Numerical discretization of the large-scale Maxwell's equations leads to an ill-conditioned linear s...
National audienceHybridized discontinuous Galerkin methods preserve the advantages of classical disc...
In this paper we propose a high-order space-time discontinuous Galerkin (STDG) method for solving of...
International audienceThis work is concerned with the design of a hp-like discontinuous Galerkin (DG...
AbstractIn this paper, we discuss the time-domain metamaterial Maxwell’s equations. One major contri...
The Perfectly Matched Layer (PML) technique is an effective tool introduced by B´erenger [13] to red...
AbstractThe discontinuous Galerkin method has proved to be an accurate and efficient way to numerica...
In this paper, we develop a nodal discontinuous Galerkin method for solving the time-dependent Maxwe...
Discontinuous Galerkin Finite Element Method (DG-FEM) has been further developed in this dissertatio...
This work is devoted to the numerical analysis of time-domain linear Maxwell\u27s equations in a dis...
This dissertation investigates three different mathematical models based on the time domain Maxwell\...
The discontinuous Galerkin method (DGM) is applied to a number of problems in computational electrom...
We show in this paper how to properly discretize optimized Schwarz methods for the time-harmonic Max...
We show in this paper how to properly discretize optimized Schwarz methods for the time-harmonic Max...
International audienceThis paper reviews the main features of a high-order non-dissipative discontin...
Numerical discretization of the large-scale Maxwell's equations leads to an ill-conditioned linear s...
National audienceHybridized discontinuous Galerkin methods preserve the advantages of classical disc...
In this paper we propose a high-order space-time discontinuous Galerkin (STDG) method for solving of...
International audienceThis work is concerned with the design of a hp-like discontinuous Galerkin (DG...
AbstractIn this paper, we discuss the time-domain metamaterial Maxwell’s equations. One major contri...
The Perfectly Matched Layer (PML) technique is an effective tool introduced by B´erenger [13] to red...