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X-ray magnetic circular dichroism in (Ge,Mn) compounds: experiments and modeling

Materials Science 2014-07-21 v5 Other Condensed Matter

Abstract

X-ray absorption (XAS) and x-ray magnetic circular dichroism (XMCD) spectra at the L2,3_{2,3} edges of Mn in (Ge,Mn) compounds have been measured and are compared to the results of first principles calculation. Early \textit{ab initio} studies show that the Density Functional Theory (DFT) can very well describe the valence band electronic properties but fails to reproduce a characteristic change of sign in the L3_{3} XMCD spectrum of Mn in Ge3_3Mn5_5, which is observed in experiments. In this work we demonstrate that this disagreement is partially related to an underestimation of the exchange splitting of Mn 2pp core states within the local density approximation. It is shown that the change in sign experimentally observed is reproduced if the exchange splitting is accurately calculated within the Hartree-Fock approximation, while the final states can be still described by the DFT. This approach is further used to calculate the XMCD in different (Ge,Mn) compounds. It demonstrates that the agreement between experimental and theoretical spectra can be improved by combining state of the art calculations for the core and valence states respectively.

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Cite

@article{arxiv.1210.1991,
  title  = {X-ray magnetic circular dichroism in (Ge,Mn) compounds: experiments and modeling},
  author = {Samuel Tardif and Andrey Titov and Emmanuel Arras and Ivetta Slipukhina and El-Kebir Hlil and Salia Cherifi and Yves Joly and Matthieu Jamet and André Barski and Joel Cibert and Erkin Kulatov and Y. A. Uspenskii and Pascal Pochet},
  journal= {arXiv preprint arXiv:1210.1991},
  year   = {2014}
}

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8 pages