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Observation of Spin Wave Resonance in Ni Thin Films after Adsorption of Oxygen

机译:氧吸附后Ni薄膜自旋波共振的观察

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摘要

Ni thin films were deposited in ultrahigh vacuum (UHV) onto soft glass substrates. Film thicknesses ranged from 74 to 837 Å. On films in UHV, only the uniform precession mode was observed during the microwave experiments. Admission of gases such as H2, H2O, O2, N2O, and air caused a lowering of the resonance field of the uniform precession mode. This effect was interpreted earlier as a relief of compressive stress related to surface tension. After adsorption of gases the films were virtually stress free. In the case of O2, N2O, and air admission a standing spin wave resonance (SWR) mode (p=1) slowly developed in films thicker than 400 Å after the lowering of the resonance field of the uniform precession mode was observed. From the fact that in UHV and in the presence of H2 and H2O no SWR was found, while development of the first mode was slow in oxygen‐containing atmosphere and was thought to be related to the growth of a NiO layer, it may be concluded that spin wave excitation is made possible in this case as a result of surface spin pinning due to ferromagnetic‐antiferromagnetic exchange coupling (Meiklejohn and Bean) rather than surface anisotropy (Néel). The surface spin pinning was found to be weak but the intensity of the first mode increased rapidly with film thicknesses above 400 Å. On the basis of the surface spin pinning model proposed by Kittel the exchange constant A was assigned an average value of 0.74×10-6 erg/cm.
机译:Ni薄膜以超高真空(UHV)沉积在软玻璃基板上。薄膜厚度范围从74到837Å。在特高压电影中,在微波实验中仅观察到均匀的进动模式。诸如H 2,H 2 O,O 2,N 2 O和空气之类的气体的进入导致均匀进动模式的共振场的降低。早先将此效应解释为与表面张力有关的压应力的减轻。吸附气体后,薄膜几乎没有应力。在O2,N2O和空气进入的情况下,观察到均匀进动模式的共振场降低后,在厚度大于400的薄膜中缓慢出现立式自旋波共振(SWR)模式(p = 1)。根据以下事实:在特高压中以及在存在H2和H2O的情况下均未发现SWR,尽管第一模式的发展在含氧气氛中缓慢,并且被认为与NiO层的生长有关,但可以得出结论在这种情况下,由于铁磁-反铁磁交换耦合(Meiklejohn和Bean)而不是表面各向异性(Néel)引起的表面自旋钉扎,使得自旋波激发成为可能。发现表面自旋钉扎较弱,但随着膜厚度超过400,第一模式的强度迅速增加。根据基特尔提出的表面自旋钉扎模型,交换常数A的平均值为0.74×10-6 erg / cm。

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  • 来源
    《Journal of Applied Physics》 |1970年第1期|共4页
  • 作者

    Janssen M. M. P.;

  • 作者单位

    Center for Surface and Coatings Research, Lehigh University, Bethlehem, Pennsylvania 18015;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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