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Investigation of the Tunability of the Spin Configuration Inside Exchange Coupled Springs of Hard/Soft Magnets

机译:硬/软磁铁交换耦合弹簧内部自旋结构的可调谐性研究

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摘要

Magnetic multilayer (ML) structures comprising a perpendicular magnetic anisotropy (PMA) layer coupled to an in-plane magnetic anisotropy (IMA) layer are promising materials for zero/low field operating spin-torque oscillators and bit patterned recording media. The magnetization tilt angle can be easily tuned by varying the IMA layer thickness due to the competition between PMA and IMA layers. To explore the underlying magnetization reversal mechanism and to further understand the control of tilt angle and uniformity of the magnetization, the IMA (NiFe, Co, and CoFeB)/PMA (Co/Pd MLs) exchange spring systems are systematically studied. Experimental data obtained from magnetometry show good agreement with 1-D micromagnetic simulations, allowing us to design tunable exchange coupled spring as a function of IMA thickness.
机译:包括耦合到面内磁各向异性(IMA)层的垂直磁各向异性(PMA)层的磁性多层(ML)结构是用于零/低场操作自旋转矩振荡器和位图案化记录介质的有前途的材料。由于PMA和IMA层之间的竞争,可以通过更改IMA层厚度轻松调整磁化倾斜角。为了探索潜在的磁化反转机制并进一步了解倾斜角和磁化均匀性的控制,系统地研究了IMA(NiFe,Co和CoFeB)/ PMA(Co / Pd MLs)交换弹簧系统。从磁力计获得的实验数据表明与一维微磁模拟具有良好的一致性,从而使我们能够根据IMA厚度来设计可调交换耦合弹簧。

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