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Magnetic Properties and Magnetization Reversal of Thin Films and Nanodots Consisting of Exchange-Coupled Composite Co/Pd Multi-Layer and Co Layer With Orthogonal Anisotropies

机译:正交各向异性的交流耦合复合Co / Pd多层和Co层组成的薄膜和纳米点的磁性和磁化反转

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We report on the fabrication and measurement of the switching characteristics of Co/Pd multi-layer thin films and nanodots. We used the method of anomalous Hall effect to obtain the hysteresis curves of both in-plane and out-of-plane magnetization. While Co/Pd thin film is found to switch by nucleation followed by domain propagation, Co/Pd nanodots switch by quasi-coherent rotation. We found that the coercivity of Co/Pd increases by a power law with respect to decreasing dots size. The coercivity can be reduced by exchange coupling the Co/Pd multi-layer to a 2 nm thick Co layer. Adding a Cu spacer layer between the Co/Pd multi-layer and Co layer provides a reliable way to modulate the strength of exchange coupling and tailoring the coercivity. As the Cu spacer becomes thicker, the coercivity increases. The exchange energy density is estimated to be 14.6 Merg/cm and the exchange constant, 2.92 erg/cm. The dependence of saturation field and coercivity on the thickness of the Cu spacer layer is fitted to the same empirical model and the exchange interaction is found to decay exponentially with distance. The exchange-coupled samples switch by quasi-domain propagation for both thin films and nanodots.
机译:我们报告了Co / Pd多层薄膜和纳米点的开关特性的制造和测量。我们使用异常霍尔效应的方法来获得平面内和平面外磁化的磁滞曲线。虽然发现Co / Pd薄膜通过成核,然后进行畴扩散而转换,但Co / Pd纳米点通过准相干旋转而转换。我们发现,相对于减小的点尺寸,Co / Pd的矫顽力通过幂定律增加。可通过将Co / Pd多层交换耦合到2 nm厚的Co层来降低矫顽力。在Co / Pd多层和Co层之间添加Cu间隔层可提供一种可靠的方式来调节交换耦合的强度并调整矫顽力。随着Cu间隔物变厚,矫顽力增加。交换能量密度估计为14.6 Merg / cm,交换常数为2.92 erg / cm。饱和场和矫顽力对Cu间隔层厚度的依赖性也适用于相同的经验模型,并且发现交换相互作用随距离呈指数衰减。交换耦合的样品通过薄膜和纳米点的准域传播进行切换。

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