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Channel: ScienceDirect Publication: Thin Solid Films
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Stress-controllable microwave ferromagnetic performances of amorphous Fe56Co24B20 films prepared by pulsed laser deposition

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Publication date: 31 August 2017
Source:Thin Solid Films, Volume 636
Author(s): Xiaomin Liu, Ru Yang, Honglei Du, Qiang Li, Jie Xu, Xia Wang, Weihua Zong, Zhejun Jin, Guoxia Zhao, Shandong Li
A stress deposition was proposed in pulse laser deposition (PLD) device with a tunable substrate curvature fixture. Various Fe56Co24B20 amorphous thin films with different compressive stresses were prepared using the home-made stress-PLD device. It is interesting to note that the compressive stress, resulted from vaulted substrates, leads to a well-defined in-plane uniaxial magnetic anisotropy. As a result, tunable self-bias microwave ferromagnetic performances are achieved. With the increase of stress (i.e. substrate curvature), the magnetic anisotropy field HK increases from 2.1 to 14.2kA/m and the ferromagnetic resonance (FMR) frequency f r up to 4.03GHz was obtained. This stress-deposition method not only tailors the FMR frequency of magnetic films, but also reduces their magnetic loss.


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