For modeling the transport of carriers in nanoscale devices, a Green-function formalism is the most accurate approach. Due to the complexity of the formalism, one should have a deep understanding of the underlying principles and use smart approximations and numerical methods for solving the kinetic equations at a reasonable computational time. In this book the required concepts from quantum and statistical mechanics and numerical methods for calculating Green functions are presented. The Green function is studied in detail for systems both under equilibrium and under nonequilibrium conditions. Because the formalism enables rigorous modeling of different scattering mechanisms in terms of self-energies, but an exact evaluation of self-energie...
We describe a procedure to calculate charge transport properties across a nanosystem. This scheme is...
Non-equilibrium Green’s function (NEGF) is a general method for modeling non-equilibrium quantum tra...
Thesis (Ph.D.)--University of Washington, 2017-06Modeling nanoscale devices quantum mechanically is ...
THESIS 8084The problem of electronic transport in systems comprising only a handful of atoms is one ...
An efficient implementation of the nonequilibrium Green function method combined with the density-fu...
A tutorial on non-equilibrium Green’s function theory and its applications on nanoscale devices is p...
<p>Non-equilibrium Green’s functions (NEGF) method in matrix form is presented and applied to model ...
Non-equilibrium Green's function (NEGF) is a general method for modeling non-equilibrium quantu...
In this paper, we present a full 3-D real-space quantum-transport simulator based on the Green's fun...
International audienceDuring the last decades, the Nonequilibrium Green's function (NEGF) formalism ...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
We demonstrate an efficient nonequilibrium Green\u27s function transport calculation procedure based...
This book is an introduction to a rapidly developing field of modern theoretical physics – the theor...
We describe a procedure to calculate charge transport properties across a nanosystem. This scheme is...
Non-equilibrium Green’s function (NEGF) is a general method for modeling non-equilibrium quantum tra...
Thesis (Ph.D.)--University of Washington, 2017-06Modeling nanoscale devices quantum mechanically is ...
THESIS 8084The problem of electronic transport in systems comprising only a handful of atoms is one ...
An efficient implementation of the nonequilibrium Green function method combined with the density-fu...
A tutorial on non-equilibrium Green’s function theory and its applications on nanoscale devices is p...
<p>Non-equilibrium Green’s functions (NEGF) method in matrix form is presented and applied to model ...
Non-equilibrium Green's function (NEGF) is a general method for modeling non-equilibrium quantu...
In this paper, we present a full 3-D real-space quantum-transport simulator based on the Green's fun...
International audienceDuring the last decades, the Nonequilibrium Green's function (NEGF) formalism ...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
This book presents an up-to-date formalism of non-equilibrium Green's functions covering different a...
We demonstrate an efficient nonequilibrium Green\u27s function transport calculation procedure based...
This book is an introduction to a rapidly developing field of modern theoretical physics – the theor...
We describe a procedure to calculate charge transport properties across a nanosystem. This scheme is...
Non-equilibrium Green’s function (NEGF) is a general method for modeling non-equilibrium quantum tra...
Thesis (Ph.D.)--University of Washington, 2017-06Modeling nanoscale devices quantum mechanically is ...