SSRL:在磁性赛道上利用二维磁力的单个Skyrmion可重构逻辑

IF 2 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Mohammad Nazmus Sakib;Hamed Vakili;Samiran Ganguly;Avik W. Ghosh;Mircea Stan
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引用次数: 0

摘要

磁性赛道存储器一方面由于畴壁比特的钉扎而变得复杂,另一方面由于需要在skyrmionic比特之间设计精确的同步和轨道间排斥。然而,这样的提议并没有利用skyrmion的复杂二维运动,例如横向马格努斯力,该力倾向于使skyrmion轨迹偏离沿着当前驱动器的直线运动。与这种skyrmion-Hall效应相关的横向偏差通常被认为是skyrmions的责任,并且努力将其消除,而不是用于拟议的设备应用。我们提出了一个简单的基于skyrmion的电路宏,该宏具有利用马格努斯力的基本逻辑门和高阶逻辑门,并提出了基于这些门的可重构逻辑。我们通过微磁学仿真验证了该方法的可靠性。这条赛道的能量消耗主要在于开销,赛道消耗的能量很小。能量-延迟乘积(EDP)相应较低,可以通过提高skyrmion速度来改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SSRL: Single Skyrmion Reconfigurable Logic Utilizing 2-D Magnus Force on Magnetic Racetracks
Magnetic racetrack memory has frequently been complicated by the pinning of domain wall bits on the one hand and the need to engineer precise synchronization and inter-track repulsion between skyrmionic bits on the other. Such proposals, however, do not capitalize on the complex 2-D motion of skyrmions, such as transverse Magnus force that tends to deviate the skyrmion trajectory from rectilinear motion along the current drive. The transverse deviation associated with such a skyrmion Hall effect is normally considered a liability for skyrmions, and efforts have focused on eliminating rather than utilizing it for proposed device applications. We propose a simple single skyrmion-based circuit macro with elementary and higher-order logic gates that utilize Magnus force and propose reconfigurable logic built on these gates. We demonstrate the reliability of the proposed approach with micromagnetics simulation. The energy consumption in this circuit lies mainly in the overhead, with the racetrack consuming a small fraction. The energy–delay product (EDP) is correspondingly low and can be improved by boosting the skyrmion speed.
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来源期刊
CiteScore
5.00
自引率
4.20%
发文量
11
审稿时长
13 weeks
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