Magnetic polarization currents in double quantum dot devices


Autoria(s): Cho, S. Y.; McKenzie, R. H.; Kang, K.; Kim, C. K.
Contribuinte(s)

A.M. Stoneham

Data(s)

01/01/2003

Resumo

We investigate coherent electron transport through a parallel circuit of two quantum dots (QDs), each of which has a single tunable. energy level. Electrons tunnelling via each dot from the left lead interfere with each other at the right lead. It is shown that due to the quantum interference of tunnelling electrons the double QD device is magnetically polarized by coherent circulation of electrons on the closed path through the dots and the leads. By varying the energy level of each dot one can make the magnetic states of the device be up-, non- or down-polarized. It is shown that for experimentally accessible temperatures and applied biases the magnetic polarization currents Should be sufficiently large to observe with current nanotechnology.

Identificador

http://espace.library.uq.edu.au/view/UQ:66097

Idioma(s)

eng

Publicador

Institute of Physics Publishing

Palavras-Chave #Physics, Condensed Matter #Aharonov-bohm Ring #Persistent Currents #Kondo Correlations #Mesoscopic Ring #Phase Evolution #Transmission #Transport #Interference #Oscillations #Coherence #C1 #240202 Condensed Matter Physics - Structural Properties #780102 Physical sciences
Tipo

Journal Article