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Nano Logic Circuits with Spin Wave Bus

机译:自旋波总线的纳米逻辑电路

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We propose and analyze logic circuits utilizing spin waves as a physical mechanism for information transmission and processing. The novelty of this approach is that information transmission is accomplished without charge transfer. A bit of information is encoded into the phase of spin wave propagating in a ferromagnetic film - Spin Wave Bus. The communication between the Spin Wave Bus and outer devices is performed in a wireless manner via a magnetic field. We describe an example of logic device using high frequency transmission lines to excite and detect spin waves. The performance is illustrated by numerical modeling based on the experimental data for spin wave excitation and propagation in NiFe film. We also propose an original scheme for output signal amplification based on the effect of holemediated ferromagnetism. Potentially, logic circuits with Spin Wave Bus may be beneficial in terms of power consumption and resolve the interconnect problem. Another expected benefit is in the enhanced logic functionality. It is possible to achieve all advantages of the phase logic using spin waves for information processing. The shortcomings and limitations of circuits with Spin Wave Bus are discussed.
机译:我们提出并分析利用自旋波作为信息传输和处理的物理机制的逻辑电路。这种方法的新颖性在于无需电荷转移即可完成信息传输。少量信息被编码为在铁磁膜中传播的自旋波的相位-自旋波总线。自旋波总线与外部设备之间的通信是通过磁场以无线方式进行的。我们描述了使用高频传输线来激发和检测自旋波的逻辑设备的示例。通过基于NiFe薄膜中自旋波激发和传播的实验数据的数值模型来说明性能。我们还根据空穴介导的铁磁性的影响提出了一种用于输出信号放大的原始方案。潜在地,具有自旋波总线的逻辑电路在功耗方面可能是有益的,并且可以解决互连问题。另一个预期的好处是增强的逻辑功能。使用自旋波进行信息处理可以实现相位逻辑的所有优点。讨论了自旋波总线电路的缺点和局限性。

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