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首页> 外文期刊>Journal of Physics. Condensed Matter >Concentration- and thickness-dependent magnetic properties of Ni _xMn_(100-x) in epitaxially grown Ni_xMn_(100-x)/Ni/(Co/)Cu_3Au(001)
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Concentration- and thickness-dependent magnetic properties of Ni _xMn_(100-x) in epitaxially grown Ni_xMn_(100-x)/Ni/(Co/)Cu_3Au(001)

机译:外延生长的Ni_xMn_(100-x)/ Ni /(Co /)Cu_3Au(001)中Ni _xMn_(100-x)的浓度和厚度相关的磁性能

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摘要

Magnetic proximity effects in single-crystalline NixMn100-x/Ni(/Co) bilayers on Cu3Au(001) are investigated for in-plane (IP) and out-of-plane (OoP) magnetization by means of the longitudinal and polar magneto-optical Kerr effect. Attention is paid to the influence on concentration- and thickness-dependent antiferromagnetic ordering (TAFM) and blocking (Tb) temperatures as well as the exchange bias field (Heb). For all the NixMn100-x films under study in contact with IP Ni, increasing TAFM is observed with decreasing Ni concentration from ~50 to ~20%, whereas only a slight change in TAFM is observed for the OoP case. Between ~28% and ~35% Ni concentration, a crossover temperature exists below which TAFM for the IP samples is higher than for the OoP samples and vice versa. Tb is higher for the IP case than for OoP, except for an equi-atomic NiMn film, while Heb increases significantly for both magnetization directions with decreasing x. These results are attributed to: (i) a rotation of the non-collinear 3Q-like spin structure of NixMn100-x from the more-OoP to the more-IP direction for decreasing Ni concentration x, along with an associated increased magnetic anisotropy, and (ii) a smaller domain wall width within the NixMn100-x films at smaller x, leading to a smaller thickness required to establish exchange bias at a fixed temperature.
机译:通过纵向和极性磁化方法研究了Cu3Au(001)上单晶NixMn100-x / Ni(/ Co)双层中的磁性接近效应,以实现面内(IP)和面外(OoP)磁化。光学克尔效应。注意对浓度和厚度相关的反铁磁有序温度(TAFM)和阻滞温度(Tb)以及交换偏压场(Heb)的影响。对于所有研究中的与IP Ni接触的NixMn100-x薄膜,观察到TAFM增加,而Ni浓度从约50%降低到〜20%,而OoP情况下TAFM仅观察到细微变化。在Ni含量的约28%到约35%之间,存在一个交叉温度,在该温度以下,IP样品的TAFM高于OoP样品,反之亦然。 IP情况下的Tb高于OoP,但等原子NiMn膜除外,而Heb在两个磁化方向均显着增加,而x减小。这些结果归因于:(i)NixMn100-x的非共线3Q状自旋结构从多OoP旋转到多IP方向以降低Ni浓度x,以及相关的磁各向异性增加, (ii)在较小的x处NixMn100-x膜内的畴壁宽度较小,从而导致在固定温度下建立交换偏压所需的厚度较小。

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