English

Hybridization between the ligand $p$ band and Fe-3$d$ orbitals in the p-type ferromagnetic semiconductor (Ga,Fe)Sb

Materials Science 2020-05-06 v1

Abstract

(Ga,Fe)Sb is a promising ferromagnetic semiconductor for practical spintronic device applications because its Curie temperature (TCT_{\rm C}) is above room temperature. However, the origin of ferromagnetism with high TCT_{\rm C} remains to be elucidated. Here, we use soft x-ray angle-resolved photoemission spectroscopy (SX-ARPES) to investigate the valence-band (VB) structure of (Ga0.95_{0.95},Fe0.05_{0.05})Sb including the Fe-3dd impurity band (IB), to unveil the mechanism of ferromagnetism in (Ga,Fe)Sb. We find that the VB dispersion in (Ga0.95_{0.95},Fe0.05_{0.05})Sb observed by SX-ARPES is similar to that of GaSb, indicating that the doped Fe atoms hardly affect the band dispersion. The Fe-3dd resonant ARPES spectra demonstrate that the Fe-3dd IB crosses the Fermi level (EFE_{\rm F}) and hybridizes with the VB of GaSb. These observations indicate that the VB structure of (Ga0.95_{0.95},Fe0.05_{0.05})Sb is consistent with that of the IB model which is based on double-exchange interaction between the localized 3dd electrons of the magnetic impurities. The results indicate that the ferromagnetism in (Ga,Fe)Sb is formed by the hybridization of the Fe-3dd IB with the ligand pp band of GaSb.

Keywords

Cite

@article{arxiv.2001.02895,
  title  = {Hybridization between the ligand $p$ band and Fe-3$d$ orbitals in the p-type ferromagnetic semiconductor (Ga,Fe)Sb},
  author = {Takahito Takeda and Masahiro Suzuki and Le Duc Anh and Nguyen Thanh Tu and Thorsten Schmitt and Satoshi Yoshida and Masato Sakano and Kyoko Ishizaka and Yukiharu Takeda and Shin-ichi Fijimori and Munetoshi Seki and Hitoshi Tabata and Atsushi Fujimori and Vladimir N. Strocov and Masaaki Tanaka and Masaki Kobayashi},
  journal= {arXiv preprint arXiv:2001.02895},
  year   = {2020}
}

Comments

24 pages, 6 figures