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Reduction of a coercive field in the bilayers of CoGdTb/NiFe with perpendicular magnetic anisotropy

机译:用垂直磁各向异性减少CogdtB / NiFE双层的矫顽磁场

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We have investigated the magnetic properties of CoGdTb/NiFe bilayer with the variation of NiFe thickness (t_(NiFe))-^sIt was found that the composition of CoGdTb layer can be controlled by adjusting the Ar working pressure of the sputtering system. We used a CoGdTb/NiFe bilayer with the Co concentration of 82.2 at. percent, which was deposited at an Ar working pressure of 3 mTorr, to investigate the bilayer coercivity. The deposition of NiFe (t_(NiFe)=1.5 nm) on the CoGdTb layer caused the increase of the coercive field. It was found from the in-plane and out-of-plane hysteresis loops that the NiFe moments were aligned out of plane due to the strong coupling between NiFe and CoGdTb, leading to the increase of the coercive field. With the increase of the NiFe thickness (t_(NiFe)=5 nm), the coercive field of CoGdTb decreased rapidly, which was likely to be caused by the in-plane component of NiFe moments. With further increase of the NiFe thickness (t_(NiFe)=10 and 15 nm), no more reduction of the coercive field was observed although more portion of NiFe moments was in plane. We conjectured that the in-plane NiFe moments within the limited area near the interface between CoGdTb and NiFe contributed to the reduction of the coercive field of CoGdTb.
机译:我们研究了Cogdtb / NiFe双层的磁性与NiFE厚度的变化(T_(niFe)) - ^ in发现可以通过调节溅射系统的AR工作压力来控制CogdtB层的组成。我们使用了CO浓度为82.2的Cogdtb / Nife双层。百分比,被沉积在3 mtorr的Ar工作压力下,以研究双层矫顽力。在CogdTB层上的NiFe(T_(NiFe)= 1.5nm)沉积导致矫顽磁场的增加。从飞机面内和面外滞后环中发现,由于NiFe和Cogdtb之间的强耦合,NiFe矩在平面上对齐,导致矫顽磁场的增加。随着NIFE厚度的增加(T_(nife)= 5nm),Cogdtb的矫顽磁场迅速下降,这可能是由NiFe时刻的平面内分量引起的。随着NIFE厚度(T_(NIFE)= 10和15nm)的进一步增加,观察到胁迫场的再减少,尽管在平面中的更多部分。我们劝导平面内的尼久赛矩在CogdtB和NiFe之间接口附近的有限区域的瞬间导致CogdTB的矫顽域的减少。

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