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Multi-bit operations in vertical spintronic shift registers

机译:垂直自旋电子移位寄存器中的多位运算

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Spintronic devices have in general demonstrated the feasibility of non-volatile memory storage and simple Boolean logic operations. Modern microprocessors have one further frequently used digital operation: bit-wise operations on multiple bits simultaneously. Such operations are important for binary multiplication and division and in efficient microprocessor architectures such as reduced instruction set computing (RISC). In this paper we show a four-stage vertical serial shift register made from RKKY coupled ultrathin (0.9 nm) perpendicularly magnetised layers into which a 3-bit data word is injected. The entire four stage shift register occupies a total length (thickness) of only 16 nm. We show how under the action of an externally applied magnetic field bits can be shifted together as a word and then manipulated individually, including being brought together to perform logic operations. This is one of the highest level demonstrations of logic operation ever performed on data in the magnetic state and brings closer the possibility of ultrahigh density allmagnetic microprocessors.
机译:自旋电子器件总体上已经证明了非易失性存储器存储和简单的布尔逻辑运算的可行性。现代微处理器还有另一种经常使用的数字运算:同时对多个位进行按位运算。这样的操作对于二进制乘法和除法以及高效的微处理器体系结构(如精简指令集计算(RISC))非常重要。在本文中,我们显示了由RKKY耦合的超薄(0.9 nm)垂直磁化层制成的四级垂直串行移位寄存器,其中注入了3位数据字。整个四级移位寄存器的总长度(厚度)仅为16 nm。我们展示了在外部施加的磁场的作用下,如何将位作为一个单词一起移位,然后分别进行操作(包括组合在一起执行逻辑运算)。这是有史以来对处于磁性状态的数据执行逻辑运算的最高水平的演示之一,并且更加接近了超高密度全磁性微处理器的可能性。

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