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通过离子束沉积技术制备的不同铁氧化物基混合物来调节NiFe/铁氧化物双层膜中的交换偏置。

Tuning the exchange bias in NiFe/Fe-oxide bilayers by way of different Fe-oxide based mixtures made with an ion-beam deposition technique.

作者信息

Lin K W, Kol P H, Guo Z Y, Ouyang H, van Lierop J

机构信息

Department of Materials Engineering, National Chung Hsing University, Taichung 402, Taiwan.

出版信息

J Nanosci Nanotechnol. 2007 Jan;7(1):265-71.

Abstract

We have investigated the structural and magnetic properties of ion-beam deposited polycrystalline NiFe (25 nm)/Fe-oxide (35 nm) bilayers. A film prepared with an assist beam O2 to Ar gas ratio of 0% during deposition had a bottom layer that consisted of pure b.c.c. Fe (a = 2.87 A) whereas films prepared with 19%O2/Ar and 35%O2/Ar had either Fe3O4 (a = 8.47 angstroms) or alpha-Fe2O3 (a = 5.04 angstroms, c = 13.86 angstroms) bottom layers, respectively. Cross-sectional transmission electron microscopy revealed a smooth interface between the top nano-columnar NiFe and bottom nano-columnar Fe-oxide layer for all films. At room temperature, the observed coercivity (Hc approximately 25 Oe) for a film prepared with 19% O2/Ar indicates the existence of a magnetically hard ferrimagnetic Fe3O4 phase that is enhancing the plain NiFe (Hc approximately 2 Oe) by way of exchange coupling. A significant amount of exchange bias is observed below 50 K, and at 10 K the size of exchange bias hysteresis loops shift increases with increasing oxygen in the films. Furthermore, the strongest exchange coupling (H(ex) approximately 135 Oe at 10 K) is with alpha-Fe2O3 (35% O2/Ar) as the bottom film layer. This indicates that the pure antiferromagnetic phases work better than ferrimagnetic phases when in contact with ferromagnetic NiFe. H(ex) (T) is well described by an effective AF domain wall energy that creates an exchange field with a (1 - T/T(crit)) temperature dependence. Hc (T) exhibits three distinct regimes of constant temperature that may indicate the existence of different AF spin populations that couple to the FM layer at different temperatures.

摘要

我们研究了离子束沉积的多晶NiFe(25纳米)/铁氧化物(35纳米)双层膜的结构和磁性。在沉积过程中辅助束O₂与Ar气体比例为0%时制备的薄膜,其底层由纯体心立方Fe(a = 2.87 Å)组成,而用19%O₂/Ar和35%O₂/Ar制备的薄膜分别具有Fe₃O₄(a = 8.47埃)或α-Fe₂O₃(a = 5.04埃,c = 13.86埃)底层。横截面透射电子显微镜显示,所有薄膜的顶部纳米柱状NiFe和底部纳米柱状铁氧化物层之间界面光滑。在室温下,用19%O₂/Ar制备的薄膜观察到的矫顽力(Hc约为25 Oe)表明存在磁性硬的亚铁磁性Fe₃O₄相,该相通过交换耦合增强了普通NiFe(Hc约为2 Oe)。在50 K以下观察到大量的交换偏置,在10 K时,交换偏置磁滞回线的尺寸随薄膜中氧含量的增加而增大。此外,最强的交换耦合(10 K时H(ex)约为135 Oe)是与α-Fe₂O₃(35%O₂/Ar)作为底部薄膜层。这表明纯反铁磁相在与铁磁NiFe接触时比亚铁磁相表现更好。H(ex)(T)可以用有效反铁磁畴壁能量很好地描述,该能量产生具有(1 - T/T(crit))温度依赖性的交换场。Hc(T)表现出三个不同的恒温区域,这可能表明存在不同的反铁磁自旋群体,它们在不同温度下与铁磁层耦合。

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