The single-impurity Anderson model is studied within the i-DFT framework, a recently proposed extension of density functional theory (DFT) for the description of electron transport in the steady state. i-DFT is designed to give both the steady current and density at the impurity, and it requires the knowledge of the exchange-correlation (xc) bias and on-site potential (gate). In this work we construct an approximation for both quantities which is accurate in a wide range of temperatures, gates, and biases, thus providing a simple and unifying framework to calculate the differential conductance at negligible computational cost in different regimes. Our results mark a substantial advance for DFT and may inform the construction of functionals ...
The single-impurity Anderson model has been the focus of theoretical studies of molecular junctions ...
Multiterminal transport setups allow one to realize measurements and functionalities (e.g., transist...
A method is presented employing the density matrix renormalization group to construct exact ground s...
The single-impurity Anderson model is studied within the i-DFT framework, a recently proposed extens...
We have recently put forward a steady-state density functional theory (i-DFT) to calculate the trans...
We present recent advances in density functional theory (DFT) for applications in the field of quant...
A formalism to describe steady-state electronic and thermal transport in the framework of density fu...
Friedel's sum rule provides an explicit expression for a conductance functional G[n], valid for the ...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
In the framework of density functional theory, a formalism to describe electronic transport in the s...
In the framework of density functional theory, a formalism to describe electronic transport in the s...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
The single-impurity Anderson model has been the focus of theoretical studies of molecular junctions ...
Multiterminal transport setups allow one to realize measurements and functionalities (e.g., transist...
A method is presented employing the density matrix renormalization group to construct exact ground s...
The single-impurity Anderson model is studied within the i-DFT framework, a recently proposed extens...
We have recently put forward a steady-state density functional theory (i-DFT) to calculate the trans...
We present recent advances in density functional theory (DFT) for applications in the field of quant...
A formalism to describe steady-state electronic and thermal transport in the framework of density fu...
Friedel's sum rule provides an explicit expression for a conductance functional G[n], valid for the ...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
In the framework of density functional theory, a formalism to describe electronic transport in the s...
In the framework of density functional theory, a formalism to describe electronic transport in the s...
In this work, we investigate the characteristics of the electric current in the so-called symmetric ...
The single-impurity Anderson model has been the focus of theoretical studies of molecular junctions ...
Multiterminal transport setups allow one to realize measurements and functionalities (e.g., transist...
A method is presented employing the density matrix renormalization group to construct exact ground s...