Shear-strain-induced ferromagnetism in antiferromagnetic nickel oxide NiO
Abstract
The effects of severe shear strain on the magneto-structural correlations in antiferromagnetic nickel oxide (NiO) were investigated using magnetic measurements and x-ray diffraction. The shear strain was applied using high-pressure torsion (HPT) processing under 6 GPa. A ferromagnetic signal appeared in the magnetization curve starting at a number of revolution N = 1. The ferromagnetic signal reached the maximum intensity at N = 2, with a saturation magnetization of 19.5 emu/mol at 5 K. A stronger ferromagnetic moment than that in NiO nanoparticles was observed, indicating the potential of shear strain to modify magnetic properties in antiferromagnetic oxides. After HPT processing, the unit cell volume was reduced, and the inserted strain promoted the appearance of ferromagnetic domains. Thus, HPT processing provides a platform for exploring the strain-induced magnetic behavior of NiO.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (5)
Takuro Yamaguchi
Graduate School of Engineering, Kyushu Institute of Technology 1 , Kitakyushu 804-8550,
Alexy Bertrand
Graduate School of Engineering, Kyushu Institute of Technology 1 , Kitakyushu 804-8550,
Masaki Mito
Graduate School of Engineering, Kyushu Institute of Technology 1 , Kitakyushu 804-8550,
Takayuki Tajiri
Faculty of Science, Fukuoka University 2 , Fukuoka 814-0180,
Zenji Horita