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Voltage Controlled Magnetic Skyrmion Motion for Racetrack Memory

机译:用于赛道记忆的压控磁Skyrmion运动

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摘要

Magnetic skyrmion, vortex-like swirling topologically stable spin configurations, is appealing as information carrier for future nanoelectronics, owing to the stability, small size and extremely low driving current density. One of the most promising applications of skyrmion is to build racetrack memory (RM). Compared to domain wall-based RM (DW-RM), skyrmion-based RM (Sky-RM) possesses quite a few benefits in terms of energy, density and speed etc. Until now, the fundamental behaviors, including nucleation/annihilation, motion and detection of skyrmion have been intensively investigated. However, one indispensable function, i.e., pinning/depinning of skyrmion still remains an open question and has to be addressed before applying skyrmion for RM. Furthermore, Current research mainly focuses on physical investigations, whereas the electrical design and evaluation are still lacking. In this work, we aim to promote the development of Sky-RM from fundamental physics to realistic electronics. First, we investigate the pinning/depinning characteristics of skyrmion in a nanotrack with the voltage-controlled magnetic anisotropy (VCMA) effect. Then, we propose a compact model and design framework of Sky-RM for electrical evaluation. This work completes the elementary memory functionality of Sky-RM and fills the technical gap between the physicists and electronic engineers, making a significant step forward for the development of Sky-RM.
机译:由于其稳定性,小尺寸和极低的驱动电流密度,磁性天rm子(涡旋状漩涡状拓扑稳定的自旋结构)吸引了未来纳米电子学的信息载体。 skyrmion的最有前途的应用之一是构建赛道内存(RM)。与基于畴壁的RM(DW-RM)相比,基于skyrmion的RM(Sky-RM)在能量,密度和速度等方面具有相当多的优势。到目前为止,基本行为包括成核/ an灭,运动并深入研究了天敌的检测。但是,一个不可或缺的功能,即固定/固定天rm胶仍然是一个悬而未决的问题,必须在将天rm胶用于RM之前解决。此外,当前的研究主要集中在物理研究上,而电气设计和评估仍然缺乏。在这项工作中,我们的目标是促进Sky-RM从基础物理学到现实电子学的发展。首先,我们研究具有电压控制磁各向异性(VCMA)效应的纳米轨道中天敌的固定/去固定特性。然后,我们提出了一个紧凑的Sky-RM模型和设计框架用于电气评估。这项工作完成了Sky-RM的基本存储功能,并填补了物理学家和电子工程师之间的技术空白,为Sky-RM的开发迈出了重要的一步。

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