We present a fully charge self-consistent implementation of dynamical mean field theory (DMFT) combined with density functional theory (DFT) for electronic structure calculations of materials with strong electronic correlations. The implementation uses the Quantum ESPRESSO package for the DFT calculations, the Wannier90 code for the up-/down-folding and the TRIQS software package for setting up and solving the DMFT equations. All components are available under open source licenses, are MPI-parallelized, fully integrated in the respective packages, and use an hdf5 archive interface to eliminate file parsing. We show benchmarks for three different systems that demonstrate excellent agreement with existing DFT + DMFT implementations in other a...
The Kohn–Sham formulation of density functional theory (KS-DFT) is the most widely employed electron...
We present an algorithm and implementation for the parallel computation of exact exchange in Quantum...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...
We present a fully charge self-consistent implementation of dynamical mean field theory (DMFT) combi...
We present a fully charge self-consistent implementation of dynamical mean field theory (DMFT) combi...
We present the TRIQS/DFTTools package, an application based on the TRIQS library that connects this ...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
ComDMFT is a massively parallel computational package to study the electronic structure of correlate...
We review recent developments in electronic structure calculations that go beyond state-of-the-art m...
The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become ...
A versatile method for combining density functional theory in the local density approximation with ...
This book covers the theory of electronic structure of materials, with special emphasis on the usage...
We review recent developments in electronic structure calculations that go beyond state-of-the-art m...
We present a new method to compute the electronic structure of correlated materials combining the hy...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
The Kohn–Sham formulation of density functional theory (KS-DFT) is the most widely employed electron...
We present an algorithm and implementation for the parallel computation of exact exchange in Quantum...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...
We present a fully charge self-consistent implementation of dynamical mean field theory (DMFT) combi...
We present a fully charge self-consistent implementation of dynamical mean field theory (DMFT) combi...
We present the TRIQS/DFTTools package, an application based on the TRIQS library that connects this ...
We implement a user-friendly and open-source software package to describe electronic, vibrational, a...
ComDMFT is a massively parallel computational package to study the electronic structure of correlate...
We review recent developments in electronic structure calculations that go beyond state-of-the-art m...
The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become ...
A versatile method for combining density functional theory in the local density approximation with ...
This book covers the theory of electronic structure of materials, with special emphasis on the usage...
We review recent developments in electronic structure calculations that go beyond state-of-the-art m...
We present a new method to compute the electronic structure of correlated materials combining the hy...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
The Kohn–Sham formulation of density functional theory (KS-DFT) is the most widely employed electron...
We present an algorithm and implementation for the parallel computation of exact exchange in Quantum...
CONSPECTUS: Ab initio modeling of matter has become a pillar of chemical research: with ever-increas...