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Entwicklerinformationen
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libmeep-dev | development library for using meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains some files for developing software. |
libmeep-mpi-dev | development library for using parallel (mpich) version of meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Distributed memory parallelism on any system supporting the MPI standard. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains some files for developing software linked to MPI. |
libmeep-mpi1 | Library for using meep, parallel (mpich) version | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Homepage: http://ab-initio.mit.edu/wiki/index.php/Meep |
libmeep-mpi2 | library for using parallel (mpich) version of meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Distributed memory parallelism on any system supporting the MPI standard. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the MPI version of the library. |
libmeep-mpi6 | library for using parallel (mpich) version of meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Distributed memory parallelism on any system supporting the MPI standard. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the MPI version of the library. |
libmeep1 | Library for using meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Homepage: http://ab-initio.mit.edu/wiki/index.php/Meep |
libmeep2 | library for using meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the library. |
libmeep6 | library for using meep | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the library. |
meep | software package for FDTD simulation | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the software. |
meep-mpi | software package for FDTD simulation, parallel (mpich) version | Mehr ... |
Meep (or MEEP) is a free finite-difference time-domain (FDTD) simulation software package developed at MIT to model electromagnetic systems. . Its features include: * Simulation in 1d, 2d, 3d, and cylindrical coordinates. * Distributed memory parallelism on any system supporting the MPI standard. * Dispersive (including loss/gain) and nonlinear (Kerr & Pockels) materials. Magnetic permeability and electric/magnetic conductivities. * PML absorbing boundaries and/or perfect conductor and/or Bloch-periodic boundary conditions. * Exploitation of symmetries to reduce the computation size . even/odd mirror symmetries and 90/180 degree rotations. * Complete scriptability - either via a Scheme scripting front-end (as in libctl and MPB), or callable as a C++ library. * Field output in the HDF5 standard scientific data format, supported by many visualization tools. * Arbitrary material and source distributions. * Field analyses including flux spectra, frequency extraction, and energy integrals; completely programmable. * Multi-parameter optimization, root-finding, integration, etcetera (via libctl). . This package contains the MPI version of the software. |
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