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Effect of ferromagnetic film thickness on magnetoresistance of thin-film superconductor-ferromagnet hybrids

机译:铁磁膜厚度对薄膜超导体-铁磁混合体磁阻的影响

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摘要

We study the influence of the thickness D_f of the plain ferromagnetic (F) film on the electrical resistance of the flux-coupled hybrids, consisting of superconducting (S) Al film and multilayer [Co/Pt] F film with out-of-plain magnetization. The behavior of such hybrids at high and low temperatures is found to be different as follows: the nucleation of superconductivity at high temperatures is governed mainly by the typical lateral dimensions of the magnetic domains, while low-temperature properties are determined by topology of the magnetic template. We show that an increase in the D_f value leads to a broadening of the field-intervals and temperature intervals where nonmonotonous dependence of the superconducting critical temperature T_c on the applied magnetic field H is observed (for demagnetized F films). Further increase in the D_f value results in a global suppression of superconductivity. Thus, we determined an optimal thickness, when the nonmonotonous dependence T_c(H) can be observed in rather broad T and H range, what can be interesting for further studies of the localized superconductivity in planar Al-based S/F hybrids and for development of the devices which can exploit the localized superconductivity.
机译:我们研究了普通铁磁(F)膜的厚度D_f对磁通耦合杂化材料的电阻的影响,该杂化材料由超导(S)铝膜和具有平整度的多层[Co / Pt] F膜组成磁化。发现这种混合体在高温和低温下的行为不同,如下所示:高温下超导的形核主要由磁畴的典型横向尺寸控制,而低温特性由磁拓扑决定模板。我们表明,D_f值的增加会导致磁场间隔和温度间隔变宽,其中观察到超导临界温度T_c对施加磁场H的非单调依赖性(对于退磁的F膜)。 D_f值的进一步增加会导致整体抑制超导性。因此,当可以在相当宽的T和H范围内观察到非单调相关性T_c(H)时,我们确定了最佳厚度,这对于进一步研究平面Al基S / F杂化材料中的局部超导性以及进行开发很有意义。可以利用局部超导性的设备。

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  • 来源
    《Journal of Applied Physics》 |2010年第3期|P.033911.1-033911.9|共9页
  • 作者单位

    Nanoscale Superconductivity and Magnetism and Pulsed Fields Group, Institute for Nanoscale Physics and Chemistry (INPAC), K.U. Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium Institute for Physics of Microstructures, Russian Academy of Sciences, 603950 Nizhny Novgorod, GSP-105, Russia;

    Scanning Probe Microscopy Group, Institute for Nanoscale Physics and Chemistry (INPAC), K.U. Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium;

    Nanoscale Superconductivity and Magnetism and Pulsed Fields Group, Institute for Nanoscale Physics and Chemistry (INPAC), K.U. Leuven, Celestijnenlaan 200D, B-3001 Leuven, Belgium;

  • 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);
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  • 正文语种 eng
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