Published January 1, 2015 | Version v1
Journal article

Theoretical study of the multiferroic properties in M-doped (M=Co, Cr, Mg) ZnO thin films

  • 1. Max Planck Institute of Microstructure Physics, Weinberg 2, 06120 Halle (Germany)
  • 2. University of Architecture, Civil Engineering and Geodesy, Faculty of Hydrotechnics, Department of Physics, 1, Hristo Smirnenski Blvd., 1046 Sofia (Bulgaria)
  • 3. University of Forestry, Faculty of Forest Industry, 10, Kl. Ohridsky Blvd., 1756 Sofia (Bulgaria)
  • 4. Institute of Physics, Martin-Luther-University, D-06099 Halle (Germany)
  • 5. University of Sofia, Department of Physics, Blvd. J. Bouchier 5, 1164 Sofia (Bulgaria)

Description

The origin of multiferroism is still an open problem in ZnO. We propose a microscopic model to clarify the occurrence of multiferroism in this material. Using Green's function technique we study the influence of ion doping and size effects on the magnetization and polarization of ZnO thin films. The calculations for magnetic Co- and Cr-ions are based on the s–d model, the transverse Ising model in terms of pseudo-spins and a biquadratic magnetoelectric coupling, whereas in case of nonmagnetic Mg-ions the model takes into account the Coulomb interaction and an indirect coupling between the pseudo-spins via the conduction electrons. We show that the magnetization M exhibits a maximum for a fixed concentration of the doping ions. Furthermore M increases with decreasing film thickness N. The polarization increases with increasing concentration of the dopant and decreasing N. The results are in good agreement with the experimental data. - Highlights: • The paper analyzes the multiferroic properties of doped ZnO thin films by a microscopic model. • The magnetization exhibits a maximum at a fixed doping concentration. • The polarization increases with growing dopant concentration. • The ferroelectric transition temperature is enhanced for increasing dopant concentration

Availability note (English)

Available from http://dx.doi.org/10.1016/j.jmmm.2014.02.011

Additional details

Identifiers

DOI
10.1016/j.jmmm.2014.02.011;
PII
S0304-8853(14)00123-1;

Publishing Information

Journal Title
Journal of Magnetism and Magnetic Materials
Journal Volume
373
Journal Page Range
p. 40-47
ISSN
0304-8853
CODEN
JMMMDC

Conference

Title
International conference on nanoscale magnetism
Acronym
ICNM-2013
Dates
2-6 Sep 2013
Place
Istanbul (Turkey)

Optional Information

Copyright
Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.