Models of nonequilibrium quantum transport underpin all modern electronic devices, from the largest scales to the smallest. Past simplifications such as coarse graining and bulk self-averaging served well to understand electronic materials. Such particular notions become inapplicable at mesoscopic dimensions, edging towards the truly quantum regime. Nevertheless a unifying thread continues to run through transport physics, animating the design of small-scale electronic technology: microscopic conservation and nonequilibrium dissipation. These fundamentals are inherent in quantum transport and gain even greater and more explicit experimental meaning in the passage to atomic-sized devices. We review their genesis, their theoretical context, a...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
Having driven a large part of the decade's progress in physics, nanoelectronics is now passing from ...
In this thesis, we pursue mechanisms in the nonequilibrium transport of charge and heat, to elucidat...
Graduation date: 2016Time-dependent electronic transport is increasingly important to the state-of-t...
This book is an introduction to a rapidly developing field of modern theoretical physics – the theor...
We present an approach to steady-state mesoscopic transport based on the masimum entropy principle f...
A thorough account of the theory of electronic transport in semiconductor nanostructures
THESIS 8084The problem of electronic transport in systems comprising only a handful of atoms is one ...
The understanding of mesoscopic transport has now attained an ultimate simplicity. Indeed, orthod...
Recent advances in semiconductor technology have made possible the fabrication of structures whose d...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
This book describes in details the theory of the electron transport in the materials and structures ...
We present an approach to steady-state mesoscopic transport based on the maximum entropy principle f...
This book describes in details the theory of the electron transport in the materials and structures ...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
Having driven a large part of the decade's progress in physics, nanoelectronics is now passing from ...
In this thesis, we pursue mechanisms in the nonequilibrium transport of charge and heat, to elucidat...
Graduation date: 2016Time-dependent electronic transport is increasingly important to the state-of-t...
This book is an introduction to a rapidly developing field of modern theoretical physics – the theor...
We present an approach to steady-state mesoscopic transport based on the masimum entropy principle f...
A thorough account of the theory of electronic transport in semiconductor nanostructures
THESIS 8084The problem of electronic transport in systems comprising only a handful of atoms is one ...
The understanding of mesoscopic transport has now attained an ultimate simplicity. Indeed, orthod...
Recent advances in semiconductor technology have made possible the fabrication of structures whose d...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
This book describes in details the theory of the electron transport in the materials and structures ...
We present an approach to steady-state mesoscopic transport based on the maximum entropy principle f...
This book describes in details the theory of the electron transport in the materials and structures ...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
We review one of the most versatile theoretical approaches to the study of time-dependent correlated...
Having driven a large part of the decade's progress in physics, nanoelectronics is now passing from ...
In this thesis, we pursue mechanisms in the nonequilibrium transport of charge and heat, to elucidat...