首页> 外文期刊>The European physical journal, B. Condensed matter physics >Temperature and thickness dependence of the magnetization reversal in DyFe2/YFe2 exchange-coupled superlattices
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Temperature and thickness dependence of the magnetization reversal in DyFe2/YFe2 exchange-coupled superlattices

机译:DyFe2 / YFe2交换耦合超晶格中磁化反转的温度和厚度依赖性

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[DyFe2/YFe2] superlattices have been grown by Molecular Beam Epitaxy. The magnetic properties of this hard/soft composite system, the components of which are exchange-coupled at the interfaces, have been investigated in the 10 K–300 K temperature range, with a specific attention paid to the influence of the soft and hard materials thicknesses. In order to unravel the very rich magnetization reversal processes, conventional susceptibility and magnetization measurements have been combined with elementselective X-ray Magnetic Circular Dichroism analysis. The superlattice with thin individual thicknesses ([1nm DyFe2/4 nm YFe2]70) reverses as a unique giant ferrimagnetic block in which the exchange-favoured antiparallel arrangement between net magnetizations is maintained under a magnetic field. In the superlattices with large individual thicknesses ([10 nm DyFe2/13 nm YFe2]18 and [10 nm DyFe2/20 nm YFe2]13), the expected exchange spring behaviour is observed: the soft YFe2 layers reverse for positive bias fields, followed by the irreversible switch of the hard DyFe2 layers. In the case of intermediate thickness for the individual DyFe2 layers ([3 nm DyFe2/12 nm YFe2]22, [5 nm DyFe2/20 nm YFe2]13, [7 nm DyFe2/28 nm YFe2]10), the magnetization reversal process strongly depends on temperature. In particular, an unusual magnetization reversal process occurs in the high temperature range where it becomes easier to reverse the hard DyFe2 layers for positive fields, while maintaining the dominant YFe2 magnetization along the field direction.
机译:[DyFe2 / YFe2]超晶格已通过分子束外延生长。已在10 K–300 K的温度范围内研究了该硬/软复合系统的磁性能,该系统的组件在界面处进行交换耦合,并特别注意软硬材料的影响厚度。为了阐明非常丰富的磁化反转过程,常规磁化率和磁化测量已与元素选择性X射线磁圆二向色性分析相结合。具有薄的单个厚度([1nm DyFe2 / 4 nm YFe2] 70)的超晶格作为独特的巨型亚铁磁块反转,其中在磁场下保持净磁化强度之间的交换有利的反平行排列。在具有较大单个厚度的超晶格([10 nm DyFe2 / 13 nm YFe2] 18和[10 nm DyFe2 / 20 nm YFe2] 13)中,观察到了预期的交换弹簧行为:对于正偏置场,柔软的YFe2层反转,随后通过硬DyFe2层的不可逆转换。在各个DyFe2层的中间厚度([3 nm DyFe2 / 12 nm YFe2] 22,[5 nm DyFe2 / 20 nm YFe2] 13,[7 nm DyFe2 / 28 nm YFe2] 10)的情况下,磁化反转过程在很大程度上取决于温度。尤其是,在高温范围内会发生异常的磁化反转过程,在此过程中,更容易反转硬DyFe2层以获得正磁场,同时保持沿磁场方向的主要YFe2磁化强度。

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