We present a fast and stable numerical technique to obtain the self-energy terms of electrodes for first-principles electron transport calculations. Although first-principles calculations based on the real-space finite-difference method are advantageous for execution on massively parallel computers, large-scale transport calculations are hampered by the computational cost and numerical instability of the computation of the self-energy terms. Using the orthogonal complement vectors of the space spanned by the generalized Bloch waves that actually contribute to transport phenomena, the computational accuracy of transport properties is significantly improved with a moderate computational cost. To demonstrate the efficiency of the present techn...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
This Colloquium discusses the coherent electron transport properties of non-ideal quasi-one-dimensio...
We present a plane-wave/pseudopotential implementation of a method to calculate the electron transpo...
The computational cost of calculating the self-energy matrices used in first-principles transport-pr...
We demonstrate an efficient nonequilibrium Green\u27s function transport calculation procedure based...
We propose an efficient computational method for evaluating the self-energy matrices of electrodes t...
We perform first-principles calculations for the electron-transport properties of graphene strips su...
The self-energy term used in transport calculations, which describes the coupling between electrode ...
We propose a first-principles method of efficiently evaluating electron-transport properties of very...
We show that transport in low-dimensional carbon structures with finite concentrations of scatterers...
We show that transport in low-dimensional carbon structures with finite concentrations of scatterers...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
We present a general method for calculating coherent electronic transport in quantum wires and tunne...
We implement a general method for correcting the low-bias transport properties of nanoscale systems ...
We develop a first-principles electron-transport simulator based on the Lippmann-Schwinger (LS) equa...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
This Colloquium discusses the coherent electron transport properties of non-ideal quasi-one-dimensio...
We present a plane-wave/pseudopotential implementation of a method to calculate the electron transpo...
The computational cost of calculating the self-energy matrices used in first-principles transport-pr...
We demonstrate an efficient nonequilibrium Green\u27s function transport calculation procedure based...
We propose an efficient computational method for evaluating the self-energy matrices of electrodes t...
We perform first-principles calculations for the electron-transport properties of graphene strips su...
The self-energy term used in transport calculations, which describes the coupling between electrode ...
We propose a first-principles method of efficiently evaluating electron-transport properties of very...
We show that transport in low-dimensional carbon structures with finite concentrations of scatterers...
We show that transport in low-dimensional carbon structures with finite concentrations of scatterers...
In this thesis I concentrate on the description of electron transport properties of microscopic obje...
We present a general method for calculating coherent electronic transport in quantum wires and tunne...
We implement a general method for correcting the low-bias transport properties of nanoscale systems ...
We develop a first-principles electron-transport simulator based on the Lippmann-Schwinger (LS) equa...
We present first-principles transport calculations of graphene nanoribbons with chemically reconstru...
This Colloquium discusses the coherent electron transport properties of non-ideal quasi-one-dimensio...
We present a plane-wave/pseudopotential implementation of a method to calculate the electron transpo...