English

Rhombic Fermi surfaces in a ferromagnetic MnGa thin film with perpendicular magnetic anisotropy

Materials Science 2022-11-14 v1

Abstract

Mn1x_{1-x}Gax_x (MnGa) with the L10L1_0 structure is a ferromagnetic material with strong perpendicular magneto-crystalline anisotropy. Although MnGa thin films have been successfully grown epitaxially and studied for various spintronics devices, fundamental understandings of its electronic structure are still lacking. To address this issue, we have investigated L10L1_0-MnGa thin films using angle-resolved photoemission spectroscopy (ARPES). We have observed a large Fermi surface with a rhombic shape in the kxk_x-kyk_y plane overlapping neighboring Fermi surfaces. The kzk_z dependence of the band structure suggests that the band dispersion observed by ARPES comes from the three-dimensional band structure of MnGa folded by a 2×2\sqrt{2} \times \sqrt{2} reconstruction. The band dispersion across the corner of the rhombic Fermi surface forms an electron pocket with a weak kzk_z dependence. The effective mass and the mobility of the bands crossing the Fermi level near the corner are estimated from the ARPES images. Based on the experimental findings, the relationship between the observed band structure and the spin-dependent properties in MnGa-based heterostructures is discussed.

Keywords

Cite

@article{arxiv.2203.12182,
  title  = {Rhombic Fermi surfaces in a ferromagnetic MnGa thin film with perpendicular magnetic anisotropy},
  author = {M. Kobayashi and N. H. D. Khang and T. Takeda and K. Araki and R. Okano and M. Suzuki and K. Kuroda and K. Yaji and K. Sugawara and S. Souma and K. Nakayama and K. Yamauchi and M. Kitamura and K. Horiba and A. Fujimori and T. Sato and S. Shin and M. Tanaka and P. N. Hai},
  journal= {arXiv preprint arXiv:2203.12182},
  year   = {2022}
}

Comments

20 pages, 7 figures