English

Structural and Magnetic Properties of Co-rich bct CoMn Films

Materials Science 2025-04-04 v4 Computational Physics

Abstract

Thin-films of bct Co1x_{1-x}Mnx_x grown by molecular beam epitaxy on MgO(001) were measured to have an enhanced atomic magnetic moment of 2.52±0.072.52 \pm 0.07 μB/atom\mu_\text{B}/\text{atom} beyond the pinnacle of the Slater-Pauling curve for Fe1x_{1-x}Cox_{x} with a moment of 2.422.42 μB/atom\mu_\text{B}/\text{atom}. The compositional variation of the average total moment for thin-film bct Co1x_{1-x}Mnx_x alloys is in stark contrast to the historical measurements of bulk fcc Co1x_{1-x}Mnx_x. These GGA calculations reveal that significant improvements of this ferromagnetic forced bct phase on MgO(001) are possible via substrate selection. For example, bct Co1x_{1-x}Mnx_x films on MgO(001) are calculated to have lower atomic moments than those on substrates with smaller lattice constants such as GaAs(001), BaTiO3_3(110), and SrTiO3_3(110) which is predicted to increase the average atomic moment up to 2.612.61 μB/atom\mu_\text{B}/\text{atom} and lead to increased structural stability and therefore thicker film growths.

Keywords

Cite

@article{arxiv.2412.02812,
  title  = {Structural and Magnetic Properties of Co-rich bct CoMn Films},
  author = {S. F. Peterson and Y. U. Idzerda},
  journal= {arXiv preprint arXiv:2412.02812},
  year   = {2025}
}

Comments

17 pages, 9 figures