TBPLaS is an open-source software package for the accurate simulation of physical systems with arbitrary geometry and dimensionality utilizing the tight-binding (TB) theory. It has an intuitive object-oriented Python application interface (API) and Cython/Fortran extensions for the performance critical parts, ensuring both flexibility and efficiency. Under the hood, numerical calculations are mainly performed by both exact diagonalizatin and the tight-binding propagation method (TBPM) without diagonalization. Especially, the TBPM is based on the numerical solution of time-dependent Schr\"odinger equation, achieving linear scaling with system size in both memory and CPU costs. Consequently, TBPLaS provides a numerically cheap approach to cal...
In this paper we present a computational procedure that utilizes real-space grids to obtain high pre...
This article summarizes the capabilities of the optoelectronic simulation framework tdkp/AQUA aimed ...
Pybinding is a Python package for numerical tight-binding calculations in solid state physics. The m...
TBPLaS is an open-source software package for the accurate simulation of physical systems with arbit...
We present PYATB, a Python package designed for computing band structures and related properties of ...
Tight-binding approaches, especially the Density Functional Tight-Binding (DFTB) and the extended ti...
The calculations of electronic transport coefficients and optical properties require a very dense in...
The calculations of electronic transport coefficients and optical properties require a very dense in...
KITE is an open-source Python/C++ software suitable for Large-Scale Tight-Binding (TB) quantum trans...
We present the Tight-Binding Studio (TB Studio) software package that calculates the different param...
Calculating the electronic structure of systems involving very different length scales presents a ch...
Calculating the electronic structure of systems involving very different length scales presents a ch...
In this article we discuss the Slater–Koster (SK) tight-binding (TB) method from the perspective of ...
Pybinding is a Python package for numerical tight-binding calculations in solid state physics. The m...
We introduce tqix.pis, a library of tqix for executing various algorithms in large-scale quantum sim...
In this paper we present a computational procedure that utilizes real-space grids to obtain high pre...
This article summarizes the capabilities of the optoelectronic simulation framework tdkp/AQUA aimed ...
Pybinding is a Python package for numerical tight-binding calculations in solid state physics. The m...
TBPLaS is an open-source software package for the accurate simulation of physical systems with arbit...
We present PYATB, a Python package designed for computing band structures and related properties of ...
Tight-binding approaches, especially the Density Functional Tight-Binding (DFTB) and the extended ti...
The calculations of electronic transport coefficients and optical properties require a very dense in...
The calculations of electronic transport coefficients and optical properties require a very dense in...
KITE is an open-source Python/C++ software suitable for Large-Scale Tight-Binding (TB) quantum trans...
We present the Tight-Binding Studio (TB Studio) software package that calculates the different param...
Calculating the electronic structure of systems involving very different length scales presents a ch...
Calculating the electronic structure of systems involving very different length scales presents a ch...
In this article we discuss the Slater–Koster (SK) tight-binding (TB) method from the perspective of ...
Pybinding is a Python package for numerical tight-binding calculations in solid state physics. The m...
We introduce tqix.pis, a library of tqix for executing various algorithms in large-scale quantum sim...
In this paper we present a computational procedure that utilizes real-space grids to obtain high pre...
This article summarizes the capabilities of the optoelectronic simulation framework tdkp/AQUA aimed ...
Pybinding is a Python package for numerical tight-binding calculations in solid state physics. The m...