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首页> 外文期刊>Journal of materials science >Study on magnetic properties of NiFe/Cu multisegmented nanowire arrays with different Cu thicknesses via FORC analysis: coercivity, interaction, magnetic reversibility
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Study on magnetic properties of NiFe/Cu multisegmented nanowire arrays with different Cu thicknesses via FORC analysis: coercivity, interaction, magnetic reversibility

机译:通过FORC分析研究不同Cu厚度的NiFe / Cu多段纳米线阵列的磁性能:矫顽力,相互作用,磁可逆性

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摘要

Two sets of the large hexagonally ordered arrays of Ni30Fe70/Cu multisegmented nanowires (NWs) with different non-ferromagnetic (NFM) thicknesses of 4 and 12nm were grown by ac pulse electrodeposition method into anodic aluminum oxide templates with a pore diameter of 40nm and 100nm inter-pore distance. The shape anisotropy of the single domain (SD) FM segments was varied from symmetrical-shaped (aspect ratio1) to rod-shaped (aspect ratio1). X-ray diffraction result showed a change in the crystalline phase from NiFe BCC (110) to Cu FCC (111) with increasing the NFM thickness. First-Order Reversal Curve (FORC) method was used to study magnetizing and demagnetizing interactions among the SD segments of the multisegmented NW arrays. The study mainly has been focused on the clarification of the effect of NFM thickness on magnetostatic interactions in the presence of high reversibility, which was estimated to be more than 50%. Weakening the magnetizing coupling of the FM segments through increasing NFM thickness is recognized by a ridge along the coercivity axis of the FORC diagram. With increasing the NFM thickness, the demagnetizing interactions decrease which can be a direct consequence of decreasing the magnetizing NFM thickness. Increasing the NFM thickness also leads to increasing the magnetic reversibility which is characterized on FORC diagrams by a shift in the FORC distribution to the lower coercivity values.
机译:通过交流脉冲电沉积法,将两组具有不同的非铁磁(NFM)厚度分别为4和12nm的Ni30Fe70 / Cu多段纳米线(NWs)的六边形大排列的两组阵列生长成孔径为40nm和100nm的阳极氧化铝模板孔间距离。单畴(SD)FM段的形状各向异性从对称形状(长宽比1)到棒状(长宽比> 1)变化。 X射线衍射结果表明,随着NFM厚度的增加,从NiFe BCC(110)到Cu FCC(111)的晶相变化。一阶反转曲线(FORC)方法用于研究多段NW阵列SD段之间的磁化和消磁相互作用。该研究主要集中于澄清在高可逆性存在下NFM厚度对静磁相互作用的影响,据估计,可逆性超过50%。通过沿着FORC图的矫顽力轴的脊可以识别出通过增加NFM厚度来减弱FM段的磁化耦合。随着NFM厚度的增加,去磁相互作用会降低,这可能是减小磁化NFM厚度的直接结果。 NFM厚度的增加也导致磁可逆性的增加,这在FORC图上的特征是FORC分布向较低的矫顽力值移动。

著录项

  • 来源
    《Journal of materials science》 |2018年第21期|18771-18780|共10页
  • 作者单位

    Univ Kashan, Inst Nanosci & Nanotechnol, Kashan 8731751167, Iran;

    Univ Kashan, Dept Phys, Kashan 8731751167, Iran;

  • 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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