The volume presents, for the very first time, an exhaustive collection of those modern theoretical methods specifically tailored for the analysis of Strongly Correlated Systems. Many novel materials, with functional properties emerging from macroscopic quantum behaviors at the frontier of modern research in physics, chemistry and materials science, belong to this class of systems. Any technique is presented in great detail by its own inventor or by one of the world-wide recognized main contributors. The exposition has a clear pedagogical cut and fully reports on the most relevant case study where the specific technique showed to be very successful in describing and enlightening the puzzling physics of a particular strongly correlated system...
Electronic structure of strongly correlated materials V. I. Anisimov Computational Studies of Qu...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
Density-functional theory (DFT) is considered the Standard Model of solid-state physics. The state-o...
The volume presents, for the very first time, an exhaustive collection of those modern theoretical m...
This volume presents, for the very first time, an exhaustive collection of those modern numerical me...
This volume presents, for the very first time, an exhaustive collection of those modern numerical me...
The continuous evolution and development of experimental techniques is at the basis of any fundament...
The continuous evolution and development of experimental techniques is at the basis of any fundament...
First-principles treatment of strongly correlated systems is currently regarded as one of greatest c...
This article is a short introduction to the modern computational techniques used to tackle the many-...
This book is a wide-ranging survey of the physics of out-of-equilibrium systems of correlated electr...
The theoretical description of many-body systems, be it molecular or extended, from first principles...
Computational chemistry has made remarkable progress in the last couple of decades due to the availa...
A variety of quantum many-body methods have been developed for studying the strongly correlated elec...
The discovery of high-Tc superconductivity in cuprates in 1986 moved strongly correlated systems fro...
Electronic structure of strongly correlated materials V. I. Anisimov Computational Studies of Qu...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
Density-functional theory (DFT) is considered the Standard Model of solid-state physics. The state-o...
The volume presents, for the very first time, an exhaustive collection of those modern theoretical m...
This volume presents, for the very first time, an exhaustive collection of those modern numerical me...
This volume presents, for the very first time, an exhaustive collection of those modern numerical me...
The continuous evolution and development of experimental techniques is at the basis of any fundament...
The continuous evolution and development of experimental techniques is at the basis of any fundament...
First-principles treatment of strongly correlated systems is currently regarded as one of greatest c...
This article is a short introduction to the modern computational techniques used to tackle the many-...
This book is a wide-ranging survey of the physics of out-of-equilibrium systems of correlated electr...
The theoretical description of many-body systems, be it molecular or extended, from first principles...
Computational chemistry has made remarkable progress in the last couple of decades due to the availa...
A variety of quantum many-body methods have been developed for studying the strongly correlated elec...
The discovery of high-Tc superconductivity in cuprates in 1986 moved strongly correlated systems fro...
Electronic structure of strongly correlated materials V. I. Anisimov Computational Studies of Qu...
Electronic structure and physical properties of strongly correlated materials containing elements wi...
Density-functional theory (DFT) is considered the Standard Model of solid-state physics. The state-o...