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聚焦离子束诱导磁性双层的界面混合实现纳米尺度磁性控制。

Focused-ion-beam induced interfacial intermixing of magnetic bilayers for nanoscale control of magnetic properties.

机构信息

Department of Physics, University of Durham, Durham, DH1 3LE, UK.

出版信息

J Phys Condens Matter. 2014 Jun 11;26(23):236002. doi: 10.1088/0953-8984/26/23/236002. Epub 2014 May 16.

Abstract

Modification of the magnetic properties in a thin-film ferromagnetic/non-magnetic bilayer system by low-dose focused ion-beam (FIB) induced intermixing is demonstrated. The highly localized capability of FIB may be used to locally control magnetic behaviour at the nanoscale. The magnetic, electronic and structural properties of NiFe/Au bilayers were investigated as a function of the interfacial structure that was actively modified using focused Ga(+) ion irradiation. Experimental work used MOKE, SQUID, XMCD as well as magnetoresistance measurements to determine the magnetic behavior and grazing incidence x-ray reflectivity to elucidate the interfacial structure. Interfacial intermixing, induced by low-dose irradiation, is shown to lead to complex changes in the magnetic behavior that are associated with monotonic structural evolution of the interface. This behavior may be explained by changes in the local atomic environment within the interface region resulting in a combination of processes including the loss of moment on Ni and Fe, an induced moment on Au and modifications to the spin-orbit coupling between Au and NiFe.

摘要

通过低剂量聚焦离子束(FIB)诱导的混合,在薄膜铁磁/非磁双层系统中实现了磁性的改性。FIB 的高度局域能力可用于在纳米尺度上局部控制磁行为。研究了 NiFe/Au 双层的磁、电子和结构特性,作为界面结构的函数,该界面结构通过使用聚焦 Ga(+)离子辐照来主动改性。实验工作使用 MOKE、SQUID、XMCD 以及磁阻测量来确定磁性行为,并使用掠入射 X 射线反射率来阐明界面结构。低剂量辐照诱导的界面混合导致磁性行为发生复杂变化,这与界面的单调结构演化有关。这种行为可以通过界面区域内局部原子环境的变化来解释,这导致了包括 Ni 和 Fe 上的磁矩损失、Au 上的诱导磁矩以及 Au 和 NiFe 之间的自旋轨道耦合的修改等过程的组合。

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