English

Long-range p-d exchange interaction in a ferromagnet-semiconductor Co/CdMgTe/CdTe quantum well hybrid structure

Materials Science 2017-11-15 v1

Abstract

The exchange interaction between magnetic ions and charge carriers in semiconductors is considered as prime tool for spin control. Here, we solve a long-standing problem by uniquely determining the magnitude of the long-range pdp-d exchange interaction in a ferromagnet-semiconductor (FM-SC) hybrid structure where a 10~nm thick CdTe quantum well is separated from the FM Co layer by a CdMgTe barrier with a thickness on the order of 10~nm. The exchange interaction is manifested by the spin splitting of acceptor bound holes in the effective magnetic field induced by the FM. The exchange splitting is directly evaluated using spin-flip Raman scattering by analyzing the dependence of the Stokes shift ΔS\Delta_S on the external magnetic field BB. We show that in strong magnetic field ΔS\Delta_S is a linear function of BB with an offset of Δpd=50100 μ\Delta_{pd} = 50-100~\mueV at zero field from the FM induced effective exchange field. On the other hand, the sds-d exchange interaction between conduction band electrons and FM, as well as the pdp-d contribution for free valence band holes, are negligible. The results are well described by the model of indirect exchange interaction between acceptor bound holes in the CdTe quantum well and the FM layer mediated by elliptically polarized phonons in the hybrid structure.

Keywords

Cite

@article{arxiv.1708.05268,
  title  = {Long-range p-d exchange interaction in a ferromagnet-semiconductor Co/CdMgTe/CdTe quantum well hybrid structure},
  author = {I. A. Akimov and M. Salewski and I. V. Kalitukha and S. V. Poltavtsev and J. Debus and D. Kudlacik and V. F. Sapega and N. E. Kopteva and E. Kirstein and E. A. Zhukov and D. R. Yakovlev and G. Karczewski and M. Wiater and T. Wojtowicz and V. L. Korenev and Yu. G. Kusrayev and M. Bayer},
  journal= {arXiv preprint arXiv:1708.05268},
  year   = {2017}
}

Comments

11 pages, 8 figures

R2 v1 2026-06-22T21:17:08.914Z