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superconductivity · GitHub Topics · GitHub

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superconductivity

Here are 101 public repositories matching this topic...

Python library to compute properties of quantum tight binding models, including topological, electronic and magnetic properties and including the effect of many-body interactions.

  • Updated Aug 27, 2026
  • Jupyter Notebook

User-friendly open-source software to design and solve tight-binding models, addressing electronic properties, topology, interactions, non-collinear magnetism, and unconventional superconductivity, among others.

  • Updated Aug 21, 2026
  • Python

2D time-dependent Ginzburg-Landau in Python

  • Updated Jun 25, 2026
  • Python

Simulate the magnetic response of 2D superconductors

  • Updated May 2, 2026
  • Python

Predict the Critical Temperature of a Superconductor

  • Updated Nov 11, 2018
  • R

Svirl is GPU-accelerated solver of complex Ginzburg-Landau equations for superconductivity. It consists of time-dependent solver to describe vortex dynamics and free energy minimizer to accurately find static configurations.

  • Updated Sep 1, 2022
  • Python

Parameterized verification framework (PCells, DRC, LVS) for Superconducting and Quantum Electronics.

  • Updated Oct 11, 2019
  • Python

SuperDetectorPy is a program for simulating superconducting single-photon detectors.

  • Updated Jun 22, 2022
  • Python

Numerical library for working with clean superconductors in Python using the Bogoliubov-de Gennes formalism

  • Updated Oct 2, 2025
  • Python

DGApy is a python toolbox for the Matsubara Green's function formalism of correlated electrons on a lattice.

  • Updated Feb 29, 2024
  • Jupyter Notebook

Simulate general non-equilibrium superconductor/ferromagnet systems via the Usadel diffusion equation

  • Updated Feb 17, 2025
  • Fortran

Composition-based predictions for chemically novel, high-temperature superconductors.

  • Updated Aug 7, 2023
  • Jupyter Notebook

Simulate specific equilibrium superconductor/ferromagnet systems via the Usadel diffusion equation

  • Updated Feb 13, 2020
  • MATLAB

Numerical solver for DC Bi-SQUID/SQUID circuits.

  • Updated Dec 11, 2022
  • Python

This solves the Bogoliubov-de Gennes equations and gap equations in the s-wave superconductor with the use of the Reduced-Shifted Conjugate-Gradient Method method. See, Y. Nagai, Y. Shinohara, Y. Futamura, and T. Sakurai,[arXiv:1607.03992v2 or DOI:10.7566/JPSJ.86.014708]. http://dx.doi.org/10.7566/JPSJ.86.014708

  • Updated Jun 7, 2017
  • Python

Implementation of gauged string method for the calculation of minimum energy path of vortex nucleation in superconductors within Ginzburg-Landau theory.

  • Updated Aug 17, 2026
  • Cuda

Data processing pipeline for analysis of Shubnikov de Haas oscillations

  • Updated Feb 22, 2017
  • Jupyter Notebook

Object oriented package for solving self-consistent mean field theory of interacting lattice systems.

  • Updated Aug 28, 2026
  • Julia

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