First principles simulations of electronic quantum transport through nanostructured materials have become an area of intense research over the past years. Energy based approaches in the spirit of Landauer theory are well established in this field, but recently also methods that aim at the solution of the time dependent many electron problem become increasingly popular and highlight conduction as a dynamical process. In the first part of this chapter, we review the corresponding literature with a focus on time dependent density functional theory (TDDFT) as electronic structure method. The covered material is categorized according to the way the open boundary conditions are implemented. This division is not a mere technical point but also hel...
Abstract. We present an exact ab initio theory for describing the motion of interacting electrons th...
To explore whether the density-functional theory-nonequilibrium Green's function formalism (DFT-NEGF...
Time-dependent density functional theory (TDDFT) is currently the most efficient approach allowing t...
An approximate method based on adiabatic time dependent density functional theory (TDDFT) is present...
An approximate method based on adiabatic time dependent density functional the-ory (TDDFT) is presen...
The rapid miniaturization of electronic devices motivates research interests in quantum transport. R...
Based on our earlier works [X. Zheng, Phys. Rev. B 75, 195127 (2007); J. S. Jin, J. Chem. Phys. 128,...
With our proof of the holographic electron density theorem for time-dependent systems, a first-princ...
We present the time-dependent holographic electron density theorem (TD-HEDT), which lays the foundat...
We present a computationally tractable scheme of time-dependent transport phenomena within open-boun...
In this work a practical scheme is developed for the first-principles study of time-dependent quantu...
We have developed a rigorous TDDFT formalism for open systems. It is based on the equation of motion...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
Abstract. Time-dependent density functional theory (TDDFT) is a general and robust method allowing t...
PACS. 72.10.Bg – General formulation of transport theory. PACS. 85.30.Mn – Junction breakdown and tu...
Abstract. We present an exact ab initio theory for describing the motion of interacting electrons th...
To explore whether the density-functional theory-nonequilibrium Green's function formalism (DFT-NEGF...
Time-dependent density functional theory (TDDFT) is currently the most efficient approach allowing t...
An approximate method based on adiabatic time dependent density functional theory (TDDFT) is present...
An approximate method based on adiabatic time dependent density functional the-ory (TDDFT) is presen...
The rapid miniaturization of electronic devices motivates research interests in quantum transport. R...
Based on our earlier works [X. Zheng, Phys. Rev. B 75, 195127 (2007); J. S. Jin, J. Chem. Phys. 128,...
With our proof of the holographic electron density theorem for time-dependent systems, a first-princ...
We present the time-dependent holographic electron density theorem (TD-HEDT), which lays the foundat...
We present a computationally tractable scheme of time-dependent transport phenomena within open-boun...
In this work a practical scheme is developed for the first-principles study of time-dependent quantu...
We have developed a rigorous TDDFT formalism for open systems. It is based on the equation of motion...
An exact theoretical framework based on Time Dependent Density Functional Theory (TDDFT) is proposed...
Abstract. Time-dependent density functional theory (TDDFT) is a general and robust method allowing t...
PACS. 72.10.Bg – General formulation of transport theory. PACS. 85.30.Mn – Junction breakdown and tu...
Abstract. We present an exact ab initio theory for describing the motion of interacting electrons th...
To explore whether the density-functional theory-nonequilibrium Green's function formalism (DFT-NEGF...
Time-dependent density functional theory (TDDFT) is currently the most efficient approach allowing t...