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Non-uniform spatial distribution of spin polarized current in perpendicular magnetic tunnel junction free layer for logic operation

机译:垂直磁隧道结自由层中用于逻辑运算的自旋极化电流的空间分布不均匀

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In recent years, magnetic tunnel junctions (MTJs) have attracted great interests in the development of next generation high density non-volatile memory and logic chips. Though several MTJ-based logic structures have been proposed and demonstrated, these designs necessitate the inclusion of other electronic components to read the spintronic data as an electronic signal. Additionally, different levels of operations are required to achieve the desired logical function. In this work, we present a novel scheme for logic operation that is able to perform logical operations in two steps and requires no intermediate circuitry to sense the spintronic data. The device works by exploiting the magnetization dynamics of a spatial dependent distribution of current density of a magnetic tunnel junction free layer.
机译:近年来,磁性隧道结(MTJ)在下一代高密度非易失性存储器和逻辑芯片的开发中引起了极大的兴趣。尽管已经提出并论证了几种基于MTJ的逻辑结构,但是这些设计需要包含其他电子组件,以将自旋电子数据读取为电子信号。另外,需要不同级别的操作来实现所需的逻辑功能。在这项工作中,我们提出了一种新颖的逻辑运算方案,该方案能够分两步执行逻辑运算,并且不需要中间电路即可检测自旋电子数据。该设备通过利用磁性隧道结自由层电流密度的空间相关分布的磁化动力学来工作。

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