The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become a powerful first-principles approach to tackle strongly correlated materials in condensed matter physics. The wide use of this approach relies on robust and easy-to-use implementations, and its implementation in various numerical frameworks will increase its applicability on the one hand and help crosscheck the validity of the obtained results on the other. In the work, we develop a formalism within the linear combination of numerical atomic orbital (NAO) basis set framework, which allows for merging NAO-based DFT codes with DMFT quantum impurity solvers. The formalism is implemented by interfacing two NAO-based DFT codes with three DMFT impu...
The electronic correlations in materials drive a variety of fascinating phenomena from magnetism to ...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex ph...
The study of strongly correlated materials is currently perhaps one of the most active areas of res...
Abstract The LDA+DMFT method is a very powerful tool for gaining insight into the physics of strongl...
We present a formulation and implementation of the DFT+\textit{U} method within the framework of lin...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
We implement an efficient numerical method to calculate response functions of complex impurities bas...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex phase...
Large-scale density functional theory (DFT) calculations provide a powerful tool to investigate the ...
Density Functional Theory (DFT) is one of the most used ab initio theoretical frameworks in material...
In materials with strong electron correlation the proper treatment of local atomic physics described...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
We present an efficient ab initio dynamical mean-field theory (DMFT) implementation for quantitative...
We present an efficient ab initio dynamical mean-field theory (DMFT) implementation for quantitative...
The electronic correlations in materials drive a variety of fascinating phenomena from magnetism to ...
The electronic correlations in materials drive a variety of fascinating phenomena from magnetism to ...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex ph...
The study of strongly correlated materials is currently perhaps one of the most active areas of res...
Abstract The LDA+DMFT method is a very powerful tool for gaining insight into the physics of strongl...
We present a formulation and implementation of the DFT+\textit{U} method within the framework of lin...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
We implement an efficient numerical method to calculate response functions of complex impurities bas...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex phase...
Large-scale density functional theory (DFT) calculations provide a powerful tool to investigate the ...
Density Functional Theory (DFT) is one of the most used ab initio theoretical frameworks in material...
In materials with strong electron correlation the proper treatment of local atomic physics described...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
We present an efficient ab initio dynamical mean-field theory (DMFT) implementation for quantitative...
We present an efficient ab initio dynamical mean-field theory (DMFT) implementation for quantitative...
The electronic correlations in materials drive a variety of fascinating phenomena from magnetism to ...
The electronic correlations in materials drive a variety of fascinating phenomena from magnetism to ...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex ph...
The study of strongly correlated materials is currently perhaps one of the most active areas of res...