We present a method which uses density functional theory (DFT) to treat transport through a single molecule connected to two conducting leads for the weak and intermediate coupling. This case is not accessible to standard nonequilibrium Green’s function calculations. Our method is based on a mapping of the Hamiltonian on the molecule to a limited set of many-body eigenstates. This generates a many-body Hamiltonian with parameters obtained from ground-state local (spin) density approximation-DFT calculations. We then calculate the transport using many-body Green’s function theory. We compare our results with existing density matrix renormalization group calculations for spinless and for spin-1/2 fermion chains and find good agreement
Density functional theory in the Kohn-Sham formulation is the most successful method in chemistry an...
Theoretical and experimental values to date for the resistances of single molecules commonly disagre...
Impressive advances in the field of molecular spintronics allow one to study electron transport thro...
We present a method which uses density functional theory (DFT) to treat transport through a single m...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
Nanoscale optoelectronics and molecular-electronics systems operate with current injection and noneq...
Nanoscale optoelectronics and molecular-electronics systems operate with current injection and noneq...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
In this dissertation we discuss ab initio studies of quantum transport through single-molecule devic...
We report calculations using density functional theory (DFT) for the conductance of an organic molec...
In this dissertation we discuss ab initio studies of quantum transport through single-molecule devic...
This thesis is about current-density functional theory. Current plays a role in three important type...
The conductance of single molecule junctions is calculated using a Landauer approach combined with m...
International audienceThe conductance of single molecule junctions is calculated using a Landauer ap...
Density functional theory (DFT) is the most widely used quantum chemistry method. This dissertation ...
Density functional theory in the Kohn-Sham formulation is the most successful method in chemistry an...
Theoretical and experimental values to date for the resistances of single molecules commonly disagre...
Impressive advances in the field of molecular spintronics allow one to study electron transport thro...
We present a method which uses density functional theory (DFT) to treat transport through a single m...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
Nanoscale optoelectronics and molecular-electronics systems operate with current injection and noneq...
Nanoscale optoelectronics and molecular-electronics systems operate with current injection and noneq...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
In this dissertation we discuss ab initio studies of quantum transport through single-molecule devic...
We report calculations using density functional theory (DFT) for the conductance of an organic molec...
In this dissertation we discuss ab initio studies of quantum transport through single-molecule devic...
This thesis is about current-density functional theory. Current plays a role in three important type...
The conductance of single molecule junctions is calculated using a Landauer approach combined with m...
International audienceThe conductance of single molecule junctions is calculated using a Landauer ap...
Density functional theory (DFT) is the most widely used quantum chemistry method. This dissertation ...
Density functional theory in the Kohn-Sham formulation is the most successful method in chemistry an...
Theoretical and experimental values to date for the resistances of single molecules commonly disagre...
Impressive advances in the field of molecular spintronics allow one to study electron transport thro...