English

Spin polarization and magnetotransport properties of systematically disordered $\mathrm{Fe}_{60}\mathrm{Al}_{40}$ thin films

Materials Science 2021-11-03 v1 Applied Physics

Abstract

We investigate the evolution of spin polarization, spontaneous Hall angle (SHA), saturation magnetization and Curie temperature of B2B2-ordered Fe60_{60}Al40_{40} thin films under varying antisite disorder, induced by Ne+^{+}-ion irradiation. The spin polarization increases monotonically as a function of ion fluence. A relatively high polarization of 46 % and the SHA of 3.1 % are achieved on 40 nm thick films irradiated with 2 \cdot 1016^{16} ions/cm2^2 at 30 keV. An interesting divergence in the trends of the magnetization and SHA is observed for low disorder concentrations. The high spin polarization and its broad tunability range make ion-irradiated Fe60_{60}Al40_{40} a promising material for application in spin electronic devices.

Keywords

Cite

@article{arxiv.2104.14792,
  title  = {Spin polarization and magnetotransport properties of systematically disordered $\mathrm{Fe}_{60}\mathrm{Al}_{40}$ thin films},
  author = {Kiril Borisov and Jonathan Ehrler and Ciaran Fowley and Benedikt Eggert and Heiko Wende and Steffen Cornelius and Kay Potzger and Juergen Lindner and Juergen Fassbender and Rantej Bali and Plamen Stamenov},
  journal= {arXiv preprint arXiv:2104.14792},
  year   = {2021}
}