21 | 11 | 2024

A three-dimensional accelerated FDTD (finite-difference time-domain) solver based on GPU (graphics card) technology.

  • Link (29 Nov 2008)

A versatile 3D electromagnetic field simulator. It is based upon the powerful 3D-Finite Difference Time Domain Method (FDTD). Plane wave excitation with/without conducting ground can be used for bistatic scattering cross section calculation of arbitrary dielectric or metalic structures. A 3D Graphical User Interface is included in the basic module.

Commercial, university license.

  • Link (29 Nov 2008)

A FDTD C++ code with Matlab output.

  • Link (29 Nov 2008)

A borehole electromagnetic simulator, solving a comprehensive nondipolar formulation devised for layered anisotropic media with dip. It is based on the finite difference methods.

  • Link (29 Nov 2008)

On this page, a Windows- and a Linux distribution with a precompiled binary of a FDTD program will be released, by Kazuhiro Fujimor.

  • Link (29 Nov 2008)

FDTDA.FOR by Raymond J. Luebbers listed in

Karl S.Kunz, Raymond J. Luebbers, Finite Difference Time Domain Method for Electromagnetics, CRC Press, Boca Raton 1993.

Commercial X-Windows version available from Remcom Inc.

  • Link (29 Nov 2008)

A free parallel electromagnetic eigensolver which can compute eigenmodes for arbitrary 3d waveguide structures, cavities, and photonic crystals.

By Steven G. Johnson

  • Link (29 Nov 2008)

The Temporal Scattering and Response (TSAR) suite is a 3-D cubical cell FDTD program, based on Yee´s algorithm, which works in conjunction with the BRL-CAD solid modeler for object definition.

The TSAR suite consits of ANA, a mesh generator; IMAGE, a mesh viewer; SETUP_TSAR, a menu-based problem definition code; TSAR the FDTD solver; and a few simple post- processors.

TSAR is available at a nominal fee to U.S. government agencies, and to U.S. government contractors interested in collaborative efforts. Interested parties may contact

Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA 94551, USA.

  • Link (29 nov 2008)

CAvity Modelling FRamework is a fast, flexible, friendly full-vectorial Maxwell solver. Although it can tackle general electromagnetic problems, its main focus is on applications in the field of photonics.

By Peter Bienstman

  • Link (29 Nov 2008)

MAFIA commercial 3D ECAE program (commercial, university license) available from

CST AG, Bad Nauheimer Str. 19, 4289 Darmstadt, Germany.

  • Email:  This email address is being protected from spambots. You need JavaScript enabled to view it.
  • Link (29 Nov 2008)
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