To explore whether the density-functional theory-nonequilibrium Green's function formalism (DFT-NEGF) provides a rigorous framework for quantum transport, we carried out time-dependent density-functional-theory (TDDFT) calculations of the transient current through two realistic molecular devices, a carbon chain and a benzenediol molecule between two aluminum electrodes. The TDDFT simulations for the steady-state current exactly reproduce the results of fully self-consistent DFT-NEGF calculations even beyond linear response. In contrast, sizable differences are found with respect to an equilibrium, non-self-consistent treatment, which are related here to differences in the Kohn-Sham and fully interacting susceptibilities of the device region...
First principles simulations of electronic quantum transport through nanostructured materials have b...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
We have developed a rigorous TDDFT formalism for open systems. It is based on the equation of motion...
An approximate method based on adiabatic time dependent density functional theory (TDDFT) is present...
We present dynamical transport calculations based on a tight-binding approximation to adiabatic time...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
Based on our earlier works [X. Zheng, Phys. Rev. B 75, 195127 (2007); J. S. Jin, J. Chem. Phys. 128,...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2009.This electronic ver...
PACS. 72.10.Bg – General formulation of transport theory. PACS. 85.30.Mn – Junction breakdown and tu...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
An approximate method based on adiabatic time dependent density functional the-ory (TDDFT) is presen...
Abstract. We present an exact ab initio theory for describing the motion of interacting electrons th...
This thesis contains a theoretical treatment of the time-dependent quantum transport of electrons th...
First principles simulations of electronic quantum transport through nanostructured materials have b...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
We have developed a rigorous TDDFT formalism for open systems. It is based on the equation of motion...
An approximate method based on adiabatic time dependent density functional theory (TDDFT) is present...
We present dynamical transport calculations based on a tight-binding approximation to adiabatic time...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
Based on our earlier works [X. Zheng, Phys. Rev. B 75, 195127 (2007); J. S. Jin, J. Chem. Phys. 128,...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2009.This electronic ver...
PACS. 72.10.Bg – General formulation of transport theory. PACS. 85.30.Mn – Junction breakdown and tu...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
We present an exact ab initio theory for describing the motion of interacting electrons through nano...
An approximate method based on adiabatic time dependent density functional the-ory (TDDFT) is presen...
Abstract. We present an exact ab initio theory for describing the motion of interacting electrons th...
This thesis contains a theoretical treatment of the time-dependent quantum transport of electrons th...
First principles simulations of electronic quantum transport through nanostructured materials have b...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
We have developed a rigorous TDDFT formalism for open systems. It is based on the equation of motion...