liangjj/VariationalMonteCarlo
VariationalMonteCarlo calculation
Discovered public repositories for liangjj in the GitHub catalog.
VariationalMonteCarlo calculation
Implementation of the local density approximation in the 3D Fermi-Hubbard model.
An efficient python library for solving various extended Hubbard models
extension of the admirable opensourcetebd library
CheMPS2: a spin-adapted implementation of DMRG for ab initio quantum chemistry
Public repository.
Tool for computing the phase diagram and gap data of 3D condensed matter systems, via the winding number
Tool for computing the phase diagram and gap data of 2D condensed matter systems, via the Chern number
Tool for computing the phase diagram and gap data of 1D condensed matter systems, via the winding number
Public repository.
Wang-Landau algorithm for calculation of the Density of State (DOS) of generalised q-state Potts model
Public repository.
Resources for topological insulator calculations
Python implementation of the DMRG algorithm for the Taipei DMRG Winter School
Public repository.
Test code for CUDA
QSimulator is a simulation software to study the nonlinear Schrodinger equation.
Simple Path Integral Monte Carlo
A collection of useful (hopefully) Fortran 9x/2003 libraries for Scientific Calculations
Fortran Code for the non-equilibrium Dynamical Mean Field Theory
a free Variational Monte Carlo code for the Hubbard model
a very small and simple code that performs mean field calculations for the Hubbard model
Parallel MPI Fortran 90 code to model Bose-Einstein condensation using the 3D Gross-Pitaevskii equation
Lanczos algorithm for models of strongly correlated electrons
Calculation of Properties of a System of Free Fermions
C++ library with Python interface to calculate the ground state of the non-particle conserving hermitian BCS Hamiltonian in the site basis, by means of Lanczos exact diagonalization.
It's the Feiguin repository.
Topological Ladder Project
A C++ library for creating efficient and flexible physics simulations based on tensor product wavefunctions.
Noninteracting fermions in a harmonic trap
Superconductivity codes
This is a FORTRAN 90-based code that applies the Fluctuation Exchange Approximation (FLEX) to study superconductivity and magnetism in multiband tight-binding models.
solve equations arising out of new model of high-Tc superconductivity.
Mean-field self-consistent equations for slave-boson superconductivity.
Calculate the groundstate energy of 1D and 2D Fermi-Hubbard model on the GPU with Cuda.
A collection of quantum monte carlo methods.
C++ implementation of the DMRG algorithm for teaching purposes
Tetrahedron method integration library
Numerical library written in FORTRAN 90 containing integration, interpolation, differentiation, etc. routines.
Public repository.
Collection of personal scientific routines in Fortran
Public repository.
My Fortran Program For Research