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Temperature-controlled interlayer exchange coupling in strong/weak ferromagnetic multilayers: A thermomagnetic Curie switch

机译:强/弱铁磁多层中的温控层间交换耦合:热磁居里开关

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摘要

We investigate interlayer exchange coupling based on driving a strong/weak/strong ferromagnetic trilayer through the Curie point of the weakly ferromagnetic spacer, with exchange coupling between the strongly ferromagnetic outer layers that can be switched on and off, or varied continuously in magnitude by controlling the temperature of the material. We use Ni-Cu alloys of varied composition as the spacer material and model the effects of proximity-induced magnetism and the interlayer exchange coupling through the spacer from first principles, taking into account not only thermal spin disorder but also the dependence of the atomic moment of Ni on the nearest-neighbor concentration of the nonmagnetic Cu. We propose and demonstrate a gradient-composition spacer, with a lower Ni concentration at the interfaces, for greatly improved effective-exchange uniformity and significantly improved thermomagnetic switching in the structure. The reported multilayer materials can form the base for a variety of magnetic devices, such as sensors, oscillators, and memory elements based on thermomagnetic Curie switching.
机译:我们通过驱动强/弱/强铁磁三层通过弱铁磁间隔层的居里点来研究层间交换耦合,其中强铁磁外层之间的交换耦合可以打开或关闭,或者通过控制大小在大小上连续变化材料的温度。我们使用具有不同组成的Ni-Cu合金作为隔离材料,并从第一原理出发,通过邻近材料模拟了邻近感应磁和层间交换耦合的影响,不仅考虑了热自旋无序,而且考虑了原子矩的依赖性。 Ni对非磁性Cu最近邻浓度的影响。我们提出并证明了一种梯度组成的隔离物,该隔离物在界面处具有较低的Ni浓度,可大大改善有效交换均匀性并显着改善结构中的热磁开关。报道的多层材料可以构成各种磁性设备的基础,例如基于热磁居里开关的传感器,振荡器和存储元件。

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