English

Spin current generation from an epitaxial tungsten dioxide WO$_{2}$

Materials Science 2023-06-22 v3

Abstract

We report on efficient spin current generation at room temperature in rutile type WO2_{2} grown on Al2_{2}O3_{3}(0001) substrate. The optimal WO2_{2} film has (010)-oriented monoclinically distorted rutile structure with metallic conductivity due to 5d\it{d}2^2 electrons, as characterized by x-ray diffraction, electronic transport, and x-ray photoelectron spectroscopy. By conducting harmonic Hall measurement in Ni81_{81}Fe19_{19}/WO2_{2} bilayer, we estimate two symmetries of the spin-orbit torque (SOT), i.e., dampinglike (DL) and fieldlike ones to find that the former is larger than the latter. By comparison with the Ni81_{81}Fe19_{19}/W control sample, the observed DL SOT efficiency ξ\xiDL_{DL} of WO2_{2} (+0.174) is about two thirds of that of W (-0.281) in magnitude, with a striking difference in their signs. The magnitude of the ξ\xiDL_{DL} of WO2_{2} exhibits comparable value to those of widely reported Pt and Ta, and Ir oxide IrO2_{2}. The positive sign of the ξ\xiDL_{DL} of WO2_{2} can be explained by the preceding theoretical study based on the 4d\it{d} oxides. These results highlight that the epitaxial WO2_{2} offers a great opportunity of rutile oxides with spintronic functionalities, leading to future spin-orbit torque-controlled devices.

Keywords

Cite

@article{arxiv.2305.17887,
  title  = {Spin current generation from an epitaxial tungsten dioxide WO$_{2}$},
  author = {Kohei Ueda and Hayato Fujii and Takanori Kida and Masayuki Hagiwara and Jobu Matsuno},
  journal= {arXiv preprint arXiv:2305.17887},
  year   = {2023}
}

Comments

14 pages, 4 figures

R2 v1 2026-06-28T10:48:55.816Z