AIP Advances (Jan 2021)

Electronic, magnetic and galvanomagnetic properties of Co-based Heusler alloys: Possible states of a half-metallic ferromagnet and spin gapless semiconductor

  • A. A. Semiannikova,
  • Yu. A. Perevozchikova,
  • V. Yu Irkhin,
  • E. B. Marchenkova,
  • P. S. Korenistov,
  • V. V. Marchenkov

DOI
https://doi.org/10.1063/9.0000118
Journal volume & issue
Vol. 11, no. 1
pp. 015139 – 015139-5

Abstract

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Parameters of the energy gap and, consequently, electronic, magnetic and galvanomagnetic properties in different X2YZ Heusler alloys can vary quite strongly. In particular, half-metallic ferromagnets (HMFs) and spin gapless semiconductors (SGSs) with almost 100% spin polarization of charge carriers are promising materials for spintronics. The changes in the electrical, magnetic and galvanomagnetic properties of the Co2YSi (Y = Ti, V, Cr, Mn, Fe) and Co2MnZ Heusler alloys (Z = Al, Si, Ga, Ge) in possible HMF- and/or SGS-states were followed and their interconnection was established. Significant changes in the values of the magnetization and residual resistivity were found. At the same time, the correlations between the changes in these electronic and magnetic characteristics depending on the number of valence electrons and spin polarization are observed.