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February 05, 2017, at 10:57 PM by 82.228.254.112 -
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[[Software/DIOGENeS | More details]]
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%newwin% [[https://diogenes.inria.fr/ | More details]]
December 13, 2016, at 08:59 PM by 82.228.254.112 -
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>><<

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!! GERShWIN - discontinuous GalERkin Solver for microWave INteraction with biological tissues

(:linebreaks:)
(:linebreaks:)

GERShWIN is a simulation software dedicated to the simulation of microwave interaction with biological tissues. GERShWIN is based on a high order DG method formulated on unstructured tetrahedral meshes for solving the 3D system of time-domain Maxwell equations coupled to a Debye dispersion model.\\

[[Software/GERShWIN | More details]]
June 14, 2016, at 02:31 PM by 138.96.200.15 -
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HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3D system of frequency-domain Maxwell equations.
to:
HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3D system of frequency-domain Maxwell equations.\\
June 14, 2016, at 02:31 PM by 138.96.200.15 -
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%newwin% [[Software/DIOGENeS | More details]]
to:
[[Software/DIOGENeS | More details]]
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%newwin% [[Software/HORSE | More details]]
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[[Software/HORSE | More details]]
June 14, 2016, at 02:29 PM by 138.96.200.15 -
June 14, 2016, at 02:29 PM by 138.96.200.15 -
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!! HORSE - High Order solver for Radar cross Section Evaluation

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!! HORSE - High Order solver for Radar cross Section Evaluation

(:linebreaks:)

HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin%
[[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3D system of frequency-domain Maxwell equations.
to:
HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3D system of frequency-domain Maxwell equations.

%newwin% [[Software/HORSE | More details]]
>><<
June 14, 2016, at 02:27 PM by 138.96.200.15 -
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!! DIOGENeS - DIscOntinuous GalErkin Nanoscale Solvers

(:linebreaks:)

DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will officially start in January 2015 in the context of a Software Development Action supported by Inria (Direction of Technological Development).\\

DIOGENeS essentially relies on a two layer architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.\\

DIOGENeS is programmed in Fortran 2003 and the underlying algorithms are adapted to distributed memory (MPI) and shared memory (OpenMP) parallel computing.\\

''With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3D time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.''\\

Features of version V1.0 (currently planned for the end of 2016)
* Time-domain Maxwell equations in mixed form
* Drude, Drude-Lorentz and generalized dispersion models
* Linear isotropic and anisotropic media
* Affine and curvilinear tetrahedral elements
* Nodal DG schemes based on centered or upwind numerical fluxes
* Arbitrary high order nodal (Lagrange) interpolation of the field components within a mesh cell
* Explicit time-stepping schemes: 2nd and 4th order leap-frog, and optimized low storage Runge-Kutta schemes
* Silver-Muller absorbing boundary condition and PML
to:

June 14, 2016, at 02:25 PM by 138.96.200.15 -
June 14, 2016, at 02:25 PM by 138.96.200.15 -
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(:title:) Software
June 14, 2016, at 02:24 PM by 138.96.200.15 -
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(:title:) Software
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DIOGENeS essentially relies on a two layer architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.
to:
DIOGENeS essentially relies on a two layer architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.\\

%newwin% [[Software/DIOGENeS | More details]]
June 14, 2016, at 02:22 PM by 138.96.200.15 -
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!! DIOGENeS - DIscOntinuous GalErkin Nanoscale Solvers

(:linebreaks:)

DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will officially start in January 2015 in the context of a Software Development Action supported by Inria (Direction of Technological Development).\\

DIOGENeS essentially relies on a two layer architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.
June 14, 2016, at 02:17 PM by 138.96.200.15 -
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(:linebreaks:)

!!! Software
(:linebreaks:)
(:linebreaks:)

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>><<


June 13, 2016, at 11:46 AM by 134.59.191.33 -
March 23, 2016, at 11:02 AM by 138.96.200.15 -
Changed line 15 from:
Features of version V1.0 (currently planned for the end of 2015)
to:
Features of version V1.0 (currently planned for the end of 2016)
February 27, 2016, at 02:03 PM by 82.228.254.112 -
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!! DIOGENeS - DIscOntinuous GalErkin Nanoscale Solver
to:
!! DIOGENeS - DIscOntinuous GalErkin Nanoscale Solvers
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!! DIOGENeS - DIscOntinuous GalErkin Nano Solver
to:
!! DIOGENeS - DIscOntinuous GalErkin Nanoscale Solver
April 23, 2015, at 04:18 PM by 138.96.201.175 -
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!!! HORSE - High Order solver for Radar cross Section Evaluation
to:
!! HORSE - High Order solver for Radar cross Section Evaluation
April 23, 2015, at 04:17 PM by 138.96.201.175 -
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!!! DIOGENeS - DIscOntinuous GalErkin Nano Solver
to:
!! DIOGENeS - DIscOntinuous GalErkin Nano Solver
April 21, 2015, at 05:02 PM by 138.96.201.175 -
Changed lines 13-14 from:
''With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.''\\
to:
''With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3D time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.''\\
Changed line 31 from:
HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3d system of frequency-domain Maxwell equations.
to:
HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3D system of frequency-domain Maxwell equations.
April 20, 2015, at 09:48 PM by 82.228.254.112 -
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HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects | ANR TECSER project]].
to:
HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects/tecser | ANR TECSER project]]. HORSE is based on a high order HDG method formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes for solving the 3d system of frequency-domain Maxwell equations.
April 20, 2015, at 09:45 PM by 82.228.254.112 -
Deleted lines 24-27:
:linebreaks:)

!!! HORSE - High Order solver for Radar cross Section Evaluation

Added lines 27-31:
!!! HORSE - High Order solver for Radar cross Section Evaluation

(:linebreaks:)

HORSE is a simulation software whose development has started in October 2014 in the context of the %newwin% [[http://www-sop.inria.fr/nachos/projects | ANR TECSER project]].
April 20, 2015, at 09:44 PM by 82.228.254.112 -
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:linebreaks:)

!!! HORSE - High Order solver for Radar cross Section Evaluation

(:linebreaks:)

April 20, 2015, at 09:41 PM by 82.228.254.112 -
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DIOGENeS is programmed in Fortran 2003 and the underlying algorithms are adapted to distributed memory (MPI) and shared memory (OpenMP) parallel computing.\\
April 20, 2015, at 09:37 PM by 82.228.254.112 -
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>><<
April 20, 2015, at 09:37 PM by 82.228.254.112 -
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DIOGENeS essentially relies on a two layers architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.\\
to:
DIOGENeS essentially relies on a two layer architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.\\
April 20, 2015, at 09:36 PM by 82.228.254.112 -
April 20, 2015, at 09:35 PM by 82.228.254.112 -
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(:linebreaks:)

April 20, 2015, at 09:34 PM by 82.228.254.112 -
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!!! DIOGENeS - DIscOntinuous GalErkin Nano Solver

(:linebreaks:)

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%center% [+DIOGENeS - DIscOntinuous GalErkin Nano Solver+]
April 20, 2015, at 09:34 PM by 82.228.254.112 -
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%center% DIOGENeS
%center% DIscOntinuous GalErkin Nano Solver
to:
%center% [+DIOGENeS - DIscOntinuous GalErkin Nano Solver+]
April 20, 2015, at 09:33 PM by 82.228.254.112 -
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DIOGENeS essentially relies on a two layers architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various physical (material) models.\\ 
to:
DIOGENeS essentially relies on a two layers architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various material models.\\
April 20, 2015, at 09:33 PM by 82.228.254.112 -
Added lines 11-12:
DIOGENeS essentially relies on a two layers architecture. The core of the suite is a library of generic software components (data structures and algorithms) for the implementation of high order DG and HDG schemes formulated on unstructured tetrahedral and hybrid structured/unstructured (cubic/tetrahedral) meshes. This library will be used to develop dedicated simulation software for time-domain and frequency-domain problems relevant to nanophotonics and nanoplasmonics, considering various physical (material) models.\\
Changed line 15 from:
Features of version V1.0 (currently planned for end of 2015)
to:
Features of version V1.0 (currently planned for the end of 2015)
April 20, 2015, at 09:17 PM by 82.228.254.112 -
Changed line 11 from:
With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\
to:
''With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.''\\
April 20, 2015, at 09:17 PM by 82.228.254.112 -
Changed line 9 from:
DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will officially start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\
to:
DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will officially start in January 2015 in the context of a Software Development Action supported by Inria (Direction of Technological Development).\\
April 20, 2015, at 09:16 PM by 82.228.254.112 -
Changed line 9 from:
DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will effectively start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\
to:
DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will officially start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\
April 20, 2015, at 09:15 PM by 82.228.254.112 -
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%center% [+'''DIOGENeS'''+]
%center% [+'''DIscOntinuous GalErkin Nano Solver'''+]
to:
%center% DIOGENeS
%center% DIscOntinuous GalErkin Nano Solver
April 20, 2015, at 09:15 PM by 82.228.254.112 -
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%center% '''DIscOntinuous GalErkin Nano Solver'''
to:
%center% [+'''DIscOntinuous GalErkin Nano Solver'''+]
April 20, 2015, at 09:14 PM by 82.228.254.112 -
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%center% ''''DIOGENeS''''
to:
%center% [+'''DIOGENeS'''+]
April 20, 2015, at 09:14 PM by 82.228.254.112 -
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%center% '''DIOGENeS'''
to:
%center% ''''DIOGENeS''''
April 20, 2015, at 09:10 PM by 82.228.254.112 -
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!!! DIOGENeS
!!! DIscOntinuous GalErkin Nano Solver
to:
%center% '''DIOGENeS'''
%center% '''
DIscOntinuous GalErkin Nano Solver'''
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Features of version V1.0
to:
Features of version V1.0 (currently planned for end of 2015)
April 20, 2015, at 09:08 PM by 82.228.254.112 -
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%center% !!! DIOGENeS \\
%center%
!!! DIscOntinuous GalErkin Nano Solver
to:
!!! DIOGENeS
!!! DIscOntinuous GalErkin Nano Solver
April 20, 2015, at 09:08 PM by 82.228.254.112 -
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%center% '''DIOGENeS'''\\
%center% DIscOntinuous GalErkin Nano Solver
to:
%center% !!! DIOGENeS \\
%center% !!! DIscOntinuous GalErkin Nano Solver
Changed lines 11-14 from:
With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models.\\
This
solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\

Features of version V1.0:
to:
With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models. This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\

Features of version V1.0
April 20, 2015, at 09:06 PM by 82.228.254.112 -
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%center% [+'''DIOGENeS'''+]\\
%center% [+DIscOntinuous GalErkin Nano Solver+]
to:
%center% '''DIOGENeS'''\\
%center% DIscOntinuous GalErkin Nano Solver
Changed lines 8-12 from:
(:linebreaks:)

DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics.\\
Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will effectively start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\
to:

DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics. Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will effectively start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\
Changed lines 12-13 from:
This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\\
to:
This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\
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* Silver-Muller absorbing boundary condition and PML\\\
to:
* Silver-Muller absorbing boundary condition and PML
April 20, 2015, at 09:05 PM by 82.228.254.112 -
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(:linebreaks:)

>>frame bgcolor='white'<<
%center% [+'''DIOGENeS'''+]\\
%center% [+DIscOntinuous GalErkin Nano Solver+]

(:linebreaks:)
(:linebreaks:)

DIOGENeS is a software suite dedicated to the numerical modeling of light interaction with nanometer scale structures with applications to nanophotonics and nanoplasmonics.\\
Although the team is already working on several software components that will ultimately be part of this software suite, the  development of DIOGENeS will effectively start in January 2015 in the context of Software Development Action supported by Inria (Direction of Technological Development).\\

With version V1.0 of this suite, the first dedicated simulation software relying on the core library of generic components will be a 3d time-domain Maxwell solver able to deal with local dispersion models.\\
This solver will be based on a nodal discontinuous Galerkin (DG) method formulated  on a fully unstructured tetrahedral mesh.\\\

Features of version V1.0:
* Time-domain Maxwell equations in mixed form
* Drude, Drude-Lorentz and generalized dispersion models
* Linear isotropic and anisotropic media
* Affine and curvilinear tetrahedral elements
* Nodal DG schemes based on centered or upwind numerical fluxes
* Arbitrary high order nodal (Lagrange) interpolation of the field components within a mesh cell
* Explicit time-stepping schemes: 2nd and 4th order leap-frog, and optimized low storage Runge-Kutta schemes
* Silver-Muller absorbing boundary condition and PML\\\
>><<
March 29, 2015, at 10:15 PM by 82.228.254.112 -