This work is concerned with the theoretical description of systems at the nanoscale, in particular the electric current through atomic-sized metallic contacts and organic molecules. In the first part, the characteristic peak structure in conductance histograms of different metals is analyzed within a tight-binding model. In the second part, an ab-initio method for quantum transport is developed and applied to single-atom and single-molecule contacts
Electronic transport properties of Au nano-structure are investigated using both experimental and th...
The conductance of atomic-sized metallic point contacts is shown to be strongly voltage dependent du...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias Físicas, Fec...
This thesis describes the formation and physical properties of atomic chains consisting of metal ato...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departament...
The factors governing electronic transport properties of copper and gold atomic-size contacts are th...
This thesis represents an excursion into the world of molecular electronics, i.e. the field of resea...
A molecular wire is an organic molecule that forms a conducting bridge between electronic contacts. ...
Thin-film niobium mechanically controlled break junctions and resistively shunted niobium mechanical...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
Molecular electronics tends to use a single molecule as a component of an electronic device. Such re...
In this paper we present an analysis of conduction through a single atom between two metal electrode...
Electrical conductance through various nanocontacts between gold electrodes is studied by using the ...
This thesis is based on results obtained from experiments designed for a consistent study of charge ...
The physical properties of materials at the nanoscale are controlled to a large extent by their inte...
Electronic transport properties of Au nano-structure are investigated using both experimental and th...
The conductance of atomic-sized metallic point contacts is shown to be strongly voltage dependent du...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias Físicas, Fec...
This thesis describes the formation and physical properties of atomic chains consisting of metal ato...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias, Departament...
The factors governing electronic transport properties of copper and gold atomic-size contacts are th...
This thesis represents an excursion into the world of molecular electronics, i.e. the field of resea...
A molecular wire is an organic molecule that forms a conducting bridge between electronic contacts. ...
Thin-film niobium mechanically controlled break junctions and resistively shunted niobium mechanical...
Stable organic radicals integrated into molecular junctions represent a practical realization of the...
Molecular electronics tends to use a single molecule as a component of an electronic device. Such re...
In this paper we present an analysis of conduction through a single atom between two metal electrode...
Electrical conductance through various nanocontacts between gold electrodes is studied by using the ...
This thesis is based on results obtained from experiments designed for a consistent study of charge ...
The physical properties of materials at the nanoscale are controlled to a large extent by their inte...
Electronic transport properties of Au nano-structure are investigated using both experimental and th...
The conductance of atomic-sized metallic point contacts is shown to be strongly voltage dependent du...
Tesis doctoral inédita leída en la Universidad Autónoma de Madrid, Facultad de Ciencias Físicas, Fec...