Frąckowiak Łukasz, Kuświk Piotr, Urbaniak Maciej, Chaves-O'Flynn Gabriel David, Stobiecki Feliks
Institute of Molecular Physics, Polish Academy of Sciences, ul. Smoluchowskiego 17, 60-179, Poznan, Poland.
Westchester Community College, State University of New York, 75 Grasslands Road, Valhalla, New York, 10595, USA.
Sci Rep. 2018 Nov 15;8(1):16911. doi: 10.1038/s41598-018-35042-x.
The ability to perform wide-range tuning of the magnetic field required to switch the magnetization of ferromagnetic layers with perpendicular magnetic anisotropy is of great importance for many applications. We show that, for (Au/Co) multilayers, this field can be changed from minus several kOe to plus several kOe because of changes to the coupling with a ferrimagnetic multilayer [either (Tb/Fe) or (Tb/Co)] across a Au spacer (either homogeneous 1 nm thick or wedge-shaped). The adjustable parameters are the ratio of sublayer thicknesses of the ferrimagnet and the sequence of layers around the Au spacer. The change of the sequence from Co/Au/Co to Tb/Au/Co is accompanied by both the reduction of the interaction energy and the change of the magnetic field sign necessary to switch the magnetization of ferromagnetic multilayers. For a 1 nm thick Au spacer this fields change from positive (negative) to negative (positive) if the ferrimagnet is dominated by the transition metal (rare earth) as a result of its composition. The characteristic oscillatory behavior of RKKY-like coupling is demonstrated using a system with a wedge-shaped Au spacer.
对于许多应用而言,能够对具有垂直磁各向异性的铁磁层的磁化翻转所需磁场进行宽范围调谐非常重要。我们表明,对于(Au/Co)多层膜,由于穿过Au间隔层(均匀的1nm厚或楔形)与亚铁磁多层膜[(Tb/Fe)或(Tb/Co)]的耦合发生变化,该磁场可以从负几kOe改变为正几kOe。可调参数是亚铁磁体子层厚度的比例以及Au间隔层周围的层序。从Co/Au/Co到Tb/Au/Co的层序变化伴随着相互作用能的降低以及铁磁多层膜磁化翻转所需磁场符号的改变。对于1nm厚的Au间隔层,如果亚铁磁体由于其组成而以过渡金属(稀土)为主导,则该磁场从正(负)变为负(正)。使用具有楔形Au间隔层的系统展示了类RKKY耦合的特征振荡行为。