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Systematic layer-by-layer characterization of multilayers for three-dimensional data storage and logic

机译:用于三维数据存储和逻辑的多层的系统逐层表征

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摘要

Magnetic kink solitons are used as a probe to experimentally measure the layer-by-layer coercivity and interlayer coupling strength of an antiferromagnetically coupled perpendicularly magnetized Co multilayer. The magnetic response is well described by a nearest neighbor Ising macrospin model. By controlling the position of one, two or three solitons in the stack using globally applied magnetic fields, we successfully probe the switching of individual buried layers under different neighboring configurations, allowing us to access individual layer's characteristic parameters. We found the coercivity to increase dramatically up the multilayer, while the interlayer coupling strength decreased slightly. We corroborate these findings with scanning transmission electron microscopy images where a degrading quality of the multilayer is observed. This method provides a very powerful tool to characterize the quality of individual layers in complex multilayers, without the need for depth-sensitive magnetic characterization equipment.
机译:磁性扭结孤子用作探针,以实验方式测量反铁磁耦合垂直磁化的Co多层膜的逐层矫顽力和层间耦合强度。最近的伊辛宏旋转模型很好地描述了磁响应。通过使用全局施加的磁场控制堆栈中一个,两个或三个孤子的位置,我们成功地探测了在不同相邻配置下各个埋层的转换,从而使我们能够访问各个层的特征参数。我们发现矫顽力在多层结构中急剧增加,而层间耦合强度则略有下降。我们用扫描透射电子显微镜图像证实了这些发现,其中观察到多层膜的质量下降。此方法提供了一种非常强大的工具,可以表征复杂多层结构中各个层的质量,而无需深度感应磁性表征设备。

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