paper

Tuning of electron transport through a quantum wire: An exact study

arXiv:0906.4405 · doi:10.1166/jctn.2009.1098

Abstract

We explore electron transport properties in a quantum wire attached to two metallic electrodes. A simple tight-binding model is used to describe the system and the coupling of the wire to the electrodes (source and drain) is treated through Newns-Anderson chemisorption theory. In our present model, the site energies of the wire are characterized by the relation where , , are three positive numbers. For , the threshold bias voltage of electron conduction across the bridge can be controlled very nicely by tuning the strength of the potential . On the other hand, for , the wire becomes an aperiodic one and quite interestingly we see that, for some special values of , the system exhibits a {\em metal-insulator} transition which provides a significant feature in this particular study. Our numerical results may be useful for fabrication of efficient switching devices.

9 pages, 7 figures

Cited by in corpus (2)