This thesis concerns new developments within the orbital-free embedding theory, improvement of the existing functionals and design of the new algorithms facilitating multi-level simulations in condensed phase. Orbital free-embedding formalism is a theoretical method formulated within Density Functional Theory (DFT) which is used to study the effect of the environment on the electronic structure of chemical species embedded in condensed phase. Its principal ingredient is universal exact orbital-free embedding potential, which is uniquely defined by the pair of electron densities, the one corresponding to the embedded system, and the one corresponding to its environment. In this thesis the properties of the embedding potential are studied. Th...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
This dissertation concerns numerical simulations of electronic properties (ESR and UV/Vis absorption...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
The idea of describing a many-electron system using only its electron density, i.e. without construc...
In this article, we present a consistent derivation of a density functional theory (DFT) based embed...
Modeling properties of chemical species and chemical reactions requires usually the quantum-mechanic...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Recent formal developments and applications of the 'freeze-and-conquer' strategy proposed by Wesolow...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
This dissertation concerns numerical simulations of electronic properties (ESR and UV/Vis absorption...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
Recent applications of one-electron equations for embedded electron density introduced originally fo...
The idea of describing a many-electron system using only its electron density, i.e. without construc...
In this article, we present a consistent derivation of a density functional theory (DFT) based embed...
Modeling properties of chemical species and chemical reactions requires usually the quantum-mechanic...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
We present a method for performing density-functional theory (DFT) calculations in which one or more...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Recent formal developments and applications of the 'freeze-and-conquer' strategy proposed by Wesolow...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Density-functional embedding theory provides a general way to perform multi-physics quantum mechanic...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
We present a method for performing density-functional theory (DFT) calculations in which one or more...