How to Install and Uninstall python3-meep Package on Ubuntu 21.10 (Impish Indri)

Last updated: May 03,2024

1. Install "python3-meep" package

Here is a brief guide to show you how to install python3-meep on Ubuntu 21.10 (Impish Indri)

$ sudo apt update $ sudo apt install python3-meep

2. Uninstall "python3-meep" package

Please follow the step by step instructions below to uninstall python3-meep on Ubuntu 21.10 (Impish Indri):

$ sudo apt remove python3-meep $ sudo apt autoclean && sudo apt autoremove

3. Information about the python3-meep package on Ubuntu 21.10 (Impish Indri)

Package: python3-meep
Architecture: amd64
Version: 1.17.1-1
Priority: optional
Section: universe/python
Source: meep
Origin: Ubuntu
Maintainer: Ubuntu Developers
Original-Maintainer: Thorsten Alteholz
Bugs: https://bugs.launchpad.net/ubuntu/+filebug
Installed-Size: 3670
Depends: libmeep23 (= 1.17.1-1), libblas3 | libblas.so.3, libc6 (>= 2.29), libctl7 (>= 4.5.0-8), libfftw3-double3 (>= 3.3.5), libgcc-s1 (>= 3.0), liblapack3 | liblapack.so.3, libstdc++6 (>= 5.2), python3-numpy, python3
Filename: pool/universe/m/meep/python3-meep_1.17.1-1_amd64.deb
Size: 735972
MD5sum: 8f7da741c63f3a1ef1e45083d7048654
SHA1: a27a064a6a10af40c1e9f355e0b2945de174b56f
SHA256: 6192fb00450eb3b483880be9a9e70e9edd5f58ddbf741b0c3a0ad9607ee95c49
SHA512: b48e31b9dd7bec4e4f5dd7df3f9f49fa61367085802c4de88b38707096f1922835781bd320d5db8a06eae7e86e43944d4029cdf298cc5a4a56d4b45d6d6eae55
Homepage: https://meep.readthedocs.io
Description-en: software package for FDTD simulation with Python
Meep is a free and open-source software package for electromagnetics
simulation via the finite-difference time-domain (FDTD) method.
.
Its features include:
* Free and open-source software under the GNU GPL.
* Complete scriptability via Python, Scheme, or C++ APIs.
* Simulation in 1d, 2d, 3d, and cylindrical coordinates.
* Distributed memory parallelism on any system supporting MPI.
* Arbitrary anisotropic electric permittivity ε and magnetic permeability μ,
along with dispersive ε(ω) and μ(ω) including loss/gain,
nonlinear (Kerr & Pockels) dielectric and magnetic materials,
electric/magnetic conductivities σ, and saturable gain/absorption.
* Perfectly-matched layer (PML) absorbing boundaries as well as
Bloch-periodic and perfect-conductor boundary conditions.
* Exploitation of symmetries to reduce the computation size, including
even/odd mirror planes and 90°/180° rotations.
* Arbitrary current sources including a guided-mode launcher.
* Frequency-domain solver for finding the response to a
continuous-wave (CW) source.
* ε/μ and field import/export in the HDF5 data format.
* GDSII file import for planar geometries.
* Materials library containing predefined broadband, complex
refractive indices.
* Field analyses including Poynting flux, mode decomposition, near to far
transformations, frequency extraction, local density of states (LDOS),
modal volume, Maxwell stress tensor, arbitrary functions; completely
programmable.
.
This package contains the Python binding
Description-md5: 1c29e1e26b00e6212b5a7ce7483ddae1