Title :
Relationship Between Magnetostriction and Magnetic Domain Structure in Fe-Based Alloy Single-Crystal Films With bcc(001) Orientation
Author :
Aida, T. ; Kawai, T. ; Ohtake, M. ; Futamoto, M. ; Inaba, N.
Author_Institution :
Fac. of Sci. & Eng., Chuo Univ., Tokyo, Japan
Abstract :
Fe, Fe94Si6, Fe98C2, and Fe95B5 (at. %) single-crystal thin films of bcc(001) orientation are prepared on MgO(001) substrates using an ultrahigh-vacuum magnetron sputtering system. The influence of magnetic anisotropy on the magnetostriction under rotating magnetic field is investigated. Fe, Fe94Si6, and Fe98C2 films show four-fold symmetries in in-plane magnetic anisotropy, where easy and hard magnetization directions are, respectively, observed along bcc[100] and bcc[110]. Higher saturation fields measured along bcc[110] are recognized in the order of Fe (6 kOe) > Fe98C2 (5 kOe) > Fe94Si6 (4 kOe). Triangle output waveforms of magnetostriction appear when these films are measured under low-rotating fields. The behavior is related with the motion of 90° magnetic domain walls in magnetically unsaturated film. With increasing the rotating field, the films approach to magnetic saturations and the waveform gradually shifts to usual sinusoidal shape. Larger threshold rotating field is observed in the order of Fe > Fe98C2 > Fe94Si6, which is related to the saturation field. On the contrary, Fe95B5 film possesses an almost isotropic property in in-plane measurement and shows sinusoidal waveforms even when the film is magnetically unsaturated. The waveform is affected by the symmetry and the strength of magnetic anisotropy.
Keywords :
boron alloys; iron alloys; magnetic anisotropy; magnetic domain walls; magnetic thin films; magnetostriction; metallic thin films; silicon alloys; sputter deposition; Fe; Fe94Si6; Fe95B5; Fe98C2; MgO(001) substrate; bcc(001) orientation; hard magnetization; magnetic anisotropy; magnetic domain structure; magnetic domain wall; magnetic saturation; magnetically unsaturated film; magnetostriction; rotating magnetic field; single-crystal thin films; sinusoidal shape; sinusoidal waveform; threshold rotating field; triangle output waveform; ultrahigh-vacuum magnetron sputtering; Iron; Magnetic domain walls; Magnetic domains; Magnetostriction; Perpendicular magnetic anisotropy; Saturation magnetization; Epitaxial single-crystal thin film; Fe-based alloy; in-plane magnetic anisotropy; magnetic domain structure;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2320955