Substantial progress has been achieved in the last couple of decades in computing the electronic structure of correlated materials from first principles. This progress has been driven by parallel development in theory and numerical algorithms. Theoretical development in combining ab initio approaches and many-body methods is particularly promising. A crucial role is also played by a systematic method for deriving a low-energy model, which bridges the gap between real and model systems. In this article, an overview is given tracing the development from the LDA+U to the latest progress in combining the G W method and (extended) dynamical mean-field theory ( G W +EDMFT). The emphasis is on conceptual and theoretical aspects rathe...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
Over the years electronic structure theory has proven to be a powerful method with which one can pro...
The purpose of this paper is to provide an introduction for non-experts to first-principles electron...
18 pages, 3 figures, proceedings of the conference on "Coincidence Studies of Surfaces, Thin Films a...
18 pages, 3 figures, proceedings of the conference on "Coincidence Studies of Surfaces, Thin Films a...
One of the great challenges of modern condensed matter theory is to develop reliable and practical m...
Abstract The LDA+DMFT method is a very powerful tool for gaining insight into the physics of strongl...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
This article is a short introduction to the modern computational techniques used to tackle the many-...
First-principles treatment of strongly correlated systems is currently regarded as one of greatest c...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
In materials with open 3$d$ and 4$f$ shells the valence electrons are relatively localized around th...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex phase...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex ph...
This book covers the theory of electronic structure of materials, with special emphasis on the usage...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
Over the years electronic structure theory has proven to be a powerful method with which one can pro...
The purpose of this paper is to provide an introduction for non-experts to first-principles electron...
18 pages, 3 figures, proceedings of the conference on "Coincidence Studies of Surfaces, Thin Films a...
18 pages, 3 figures, proceedings of the conference on "Coincidence Studies of Surfaces, Thin Films a...
One of the great challenges of modern condensed matter theory is to develop reliable and practical m...
Abstract The LDA+DMFT method is a very powerful tool for gaining insight into the physics of strongl...
Soon after the discovery of the basic principles of quantum mechanics theorists set out to explain t...
This article is a short introduction to the modern computational techniques used to tackle the many-...
First-principles treatment of strongly correlated systems is currently regarded as one of greatest c...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
In materials with open 3$d$ and 4$f$ shells the valence electrons are relatively localized around th...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex phase...
Strongly-correlated materials are a rich playground for physical phenomena, exhibiting complex ph...
This book covers the theory of electronic structure of materials, with special emphasis on the usage...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
Over the years electronic structure theory has proven to be a powerful method with which one can pro...
The purpose of this paper is to provide an introduction for non-experts to first-principles electron...