English

Spin-flop led peculiar behavior of temperature-dependent anomalous Hall effect in Hf/Gd-Fe-Co

Applied Physics 2021-06-29 v2 Mesoscale and Nanoscale Physics

Abstract

Here we investigate the temperature dependence of anomalous Hall effect in Hf/GdFeCo/MgO sheet film and Hall bar device. The magnetic compensation temperature (TcompT_{comp}) for the sheet film and device is found to be ~240 K and ~118 K, respectively. In sheet film, spin-flopping is witnessed at a considerably lower field, 0.6 T, close to TcompT_{comp}. The AHE hysteresis loops in the sheet film have a single loop whereas in the Hall bar device, hystereses consist of triple loops are observed just above the Tcomp. Moreover, the temperature-dependent anomalous Hall resistance (RAHER_\mathrm{AHE}) responds unusually when a perpendicular magnetic field is applied while recording the RAHER_\mathrm{AHE}. The zero-field RAHER_\mathrm{AHE} scan suggests the Hall signal generates solely from the FeCo moment. However, the behavior of 3 T-field RAHER_\mathrm{AHE} scan in which the RAHER_\mathrm{AHE} drops close to zero near the TcompT_{comp} seems to be following the net magnetization response of the device, is explained by considering the low field spin-flopping around the compensation temperature. The results presented here give important insight to understand the complex AHE behavior of ferrimagnets for their spintronic applications.

Keywords

Cite

@article{arxiv.2104.05193,
  title  = {Spin-flop led peculiar behavior of temperature-dependent anomalous Hall effect in Hf/Gd-Fe-Co},
  author = {Ramesh Chandra Bhatt and Lin-Xiu Ye and Ngo Trong Hai and Jong-Ching Wu and Te-ho Wu},
  journal= {arXiv preprint arXiv:2104.05193},
  year   = {2021}
}

Comments

18 pages, 5 figures