International audienceWe present the Discontinuous Galerkim methods for solving Time-Domain (DGTD) Maxwell's equations coupled to the Drude model arising from nanophotonics. Model Order Reduction (MOR) techniques are employed to reduce the simulation time. We have considered a Proper Orthogonal Decomposition (POD) method, Krylov-subspace based operator exponential approach and Padé approximation approach. Numerical results show that the proposed DGTD + MOR methodology is much faster than the full DGTD methods
International audience— We present recent advances of the development on Discontinuous Galerkin Time...
International audienceNanophotonics is the field of science and technology which aimed at establishi...
energy conservation, centered fluxes The use of the prominent FDTD method for the time-domain scatte...
International audienceWe present the Discontinuous Galerkim methods for solving Time-Domain (DGTD) M...
International audienceIn this work, a proper orthogonal decomposition (POD) method is applied to tim...
International audienceThis paper is concerned with the design of a reduced-order model (ROM) based o...
International audienceIn this work we report on a reduced-order model (ROM) for the system of time-d...
International audienceDuring the last ten years, the discontinuous Galerkin time-domain (DGTD) metho...
International audienceThe numerical study of electromagnetic wave propagation in nanophotonic device...
This paper presents a newly developed high-order discontinuous Galerkin time-domain (DGTD) method fo...
Abstract—This paper presents a newly developed high-order discontinuous Galerkin time-domain (DGTD) ...
International audienceWe present a discontinuous finite element (discontinuous Galerkin) time-domain...
International audienceA new family of exponential-based time integration methods are proposed for th...
International audienceDuring the last ten years, the discontinuous Galerkin time-domain (DGTD) metho...
Abstract — A domain decomposition strategy is introduced in order to solve time-harmonic Maxwell’s e...
International audience— We present recent advances of the development on Discontinuous Galerkin Time...
International audienceNanophotonics is the field of science and technology which aimed at establishi...
energy conservation, centered fluxes The use of the prominent FDTD method for the time-domain scatte...
International audienceWe present the Discontinuous Galerkim methods for solving Time-Domain (DGTD) M...
International audienceIn this work, a proper orthogonal decomposition (POD) method is applied to tim...
International audienceThis paper is concerned with the design of a reduced-order model (ROM) based o...
International audienceIn this work we report on a reduced-order model (ROM) for the system of time-d...
International audienceDuring the last ten years, the discontinuous Galerkin time-domain (DGTD) metho...
International audienceThe numerical study of electromagnetic wave propagation in nanophotonic device...
This paper presents a newly developed high-order discontinuous Galerkin time-domain (DGTD) method fo...
Abstract—This paper presents a newly developed high-order discontinuous Galerkin time-domain (DGTD) ...
International audienceWe present a discontinuous finite element (discontinuous Galerkin) time-domain...
International audienceA new family of exponential-based time integration methods are proposed for th...
International audienceDuring the last ten years, the discontinuous Galerkin time-domain (DGTD) metho...
Abstract — A domain decomposition strategy is introduced in order to solve time-harmonic Maxwell’s e...
International audience— We present recent advances of the development on Discontinuous Galerkin Time...
International audienceNanophotonics is the field of science and technology which aimed at establishi...
energy conservation, centered fluxes The use of the prominent FDTD method for the time-domain scatte...