An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular transport is developed. We introduce a basis of localized molecular orbitals and formulate the many-body model in this basis. In particular, the Hubbard-Anderson Hamiltonian is derived for single-molecule junctions with intermediate coupling to the leads. As an example we consider a benzenedithiol junction with gold electrodes. An effective few-level model is obtained from which spectral and transport properties are computed and are analyzed. Electron-electron interaction crucially affects transport and induces multiscale Coulomb blockade at low biases. At large bias, transport through asymmetrically coupled molecular edge states results in the...
[[abstract]]We studied electron transport properties of a dithiol-benzene molecule covalently bonded...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
A local-orbital based {\it ab initio} approach to obtain the Green function for large heterogeneous ...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
In this work, we develop a many-body theory of electronic transport through single molecule junction...
Theoretical and experimental values to date for the resistances of single molecules commonly disagre...
The conductance of single molecule junctions is calculated using a Landauer approach combined with m...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
Theoretical tools employed in ab initio simulations in the field of molecular electronics combine me...
Theoretical tools employed in ab initio simulations in the field of molecular electronics combine me...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Molecular junctions, where single molecules are bound to metal or semiconductor electrodes, represen...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
International audienceThe conductance of single molecule junctions is calculated using a Landauer ap...
[[abstract]]We studied electron transport properties of a dithiol-benzene molecule covalently bonded...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
A local-orbital based {\it ab initio} approach to obtain the Green function for large heterogeneous ...
An ab initio based theoretical approach to describe nonequilibrium many-body effects in molecular tr...
In this work, we develop a many-body theory of electronic transport through single molecule junction...
Theoretical and experimental values to date for the resistances of single molecules commonly disagre...
The conductance of single molecule junctions is calculated using a Landauer approach combined with m...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
Theoretical tools employed in ab initio simulations in the field of molecular electronics combine me...
Theoretical tools employed in ab initio simulations in the field of molecular electronics combine me...
Electron transport through single molecule connected to the electrodes is an interesting problem fro...
Molecular junctions, where single molecules are bound to metal or semiconductor electrodes, represen...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
One means for describing electron transport across single molecule tunnel junctions (MTJs) is to use...
International audienceThe conductance of single molecule junctions is calculated using a Landauer ap...
[[abstract]]We studied electron transport properties of a dithiol-benzene molecule covalently bonded...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
A local-orbital based {\it ab initio} approach to obtain the Green function for large heterogeneous ...