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Carrier-mediated antiferromagnetic interlayer exchange coupling in diluted magnetic semiconductor multilayers Ga$_{1-x}$Mn$_x$As/GaAs:Be

Strongly Correlated Electrons 2009-11-13 v1 Materials Science

Abstract

We use neutron reflectometry to investigate the interlayer exchange coupling between Ga0.97_{0.97}Mn0.03_{0.03}As ferromagnetic semiconductor layers separated by non-magnetic Be-doped GaAs spacers. Polarized neutron reflectivity measured below the Curie temperature of Ga0.97_{0.97}Mn0.03_{0.03}As reveals a characteristic splitting at the wave vector corresponding to twice the multilayer period, indicating that the coupling between the ferromagnetic layers are antiferromagnetic (AFM). When the applied field is increased to above the saturation field, this AFM coupling is suppressed. This behavior is not observed when the spacers are undoped, suggesting that the observed AFM coupling is mediated by charge carriers introduced via Be doping. The behavior of magnetization of the multilayers measured by DC magnetometry is consistent with the neutron reflectometry results.

Keywords

Cite

@article{arxiv.0809.0955,
  title  = {Carrier-mediated antiferromagnetic interlayer exchange coupling in diluted magnetic semiconductor multilayers Ga$_{1-x}$Mn$_x$As/GaAs:Be},
  author = {J. -H. Chung and S. J. Chung and Sanghoon Lee and B. J. Kirby and J. A. Borchers and Y. J. Cho and X. Liu and J. K. Furdyna},
  journal= {arXiv preprint arXiv:0809.0955},
  year   = {2009}
}

Comments

4 pages, 4 figures