Motivated by the intriguing physics of quasi-two-dimensional fermionic systems, such as high-temperature superconducting oxides, layered transition metal chalcogenides, or surface or interface systems, the development of many-body computational methods geared at including both local and nonlocal electronic correlations has become a rapidly evolving field. It has been realized, however, that the success of such methods can be hampered by the emergence of noncausal features in the effective or observable quantities involved. Here, we present an approach wherein local many-body techniques such as dynamical mean-field theory (DMFT) are extended to nonlocal correlations and interactions, which preserves causality and has a physically intuitive i...
We have studied the non-local corrections to the local density approximation (LDA) using a many-body...
In this thesis, we tackle various problems in strongly correlated electron systems, which can be ad...
We propose an efficient dual boson scheme, which extends the dynamical mean-field theory paradigm to...
Motivated by the intriguing physics of quasi-2d fermionic systems, such as high-temperature supercon...
Many of the fascinating and unconventional properties of several transition-metal compounds with par...
Contains fulltext : 166098.pdf (preprint version ) (Open Access)Extended dynamical...
We introduce an extension of the dynamical mean-field approximation (DMFA) that retains the causal p...
The contributions from the non-local fluctuations to the dynamical mean field theory (DMFT) were stu...
We have shown the importance and necessity of the inclusion of non-local correlations in the standar...
In Density Functional Theory, the widely used local and semilocal approximations to the exchange-cor...
Contains fulltext : 72028.pdf (preprint version ) (Open Access)6 p
Kumulative Dissertation aus vier ArtikelnStrong electronic correlations are the root of many fascina...
Dynamic inter-electronic correlations are exquisitely local effects responsible for many interesting...
Nanostructures with open shell transition metal or molecular constituents host often strong electron...
We present a novel scheme for an unbiased, nonperturbative treatment of strongly correlated fermions...
We have studied the non-local corrections to the local density approximation (LDA) using a many-body...
In this thesis, we tackle various problems in strongly correlated electron systems, which can be ad...
We propose an efficient dual boson scheme, which extends the dynamical mean-field theory paradigm to...
Motivated by the intriguing physics of quasi-2d fermionic systems, such as high-temperature supercon...
Many of the fascinating and unconventional properties of several transition-metal compounds with par...
Contains fulltext : 166098.pdf (preprint version ) (Open Access)Extended dynamical...
We introduce an extension of the dynamical mean-field approximation (DMFA) that retains the causal p...
The contributions from the non-local fluctuations to the dynamical mean field theory (DMFT) were stu...
We have shown the importance and necessity of the inclusion of non-local correlations in the standar...
In Density Functional Theory, the widely used local and semilocal approximations to the exchange-cor...
Contains fulltext : 72028.pdf (preprint version ) (Open Access)6 p
Kumulative Dissertation aus vier ArtikelnStrong electronic correlations are the root of many fascina...
Dynamic inter-electronic correlations are exquisitely local effects responsible for many interesting...
Nanostructures with open shell transition metal or molecular constituents host often strong electron...
We present a novel scheme for an unbiased, nonperturbative treatment of strongly correlated fermions...
We have studied the non-local corrections to the local density approximation (LDA) using a many-body...
In this thesis, we tackle various problems in strongly correlated electron systems, which can be ad...
We propose an efficient dual boson scheme, which extends the dynamical mean-field theory paradigm to...