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Skyrmion-skyrmion and skyrmion-edge repulsions in skyrmion-based racetrack memory

机译:基于Skyrmion的赛道内存中的Skyrmion-Skyrmion和Skyrmion-edge排斥

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Magnetic skyrmions are promising for building next-generation magnetic memories and spintronic devices due to their stability, small size and the extremely low currents needed to move them. In particular, skyrmion-based racetrack memory is attractive for information technology, where skyrmions are used to store information as data bits instead of traditional domain walls. Here we numerically demonstrate the impacts of skyrmion-skyrmion and skyrmion-edge repulsions on the feasibility of skyrmion-based racetrack memory. The reliable and practicable spacing between consecutive skyrmionic bits on the racetrack as well as the ability to adjust it are investigated. Clogging of skyrmionic bits is found at the end of the racetrack, leading to the reduction of skyrmion size. Further, we demonstrate an effective and simple method to avoid the clogging of skyrmionic bits, which ensures the elimination of skyrmionic bits beyond the reading element. Our results give guidance for the design and development of future skyrmion-based racetrack memory.
机译:磁性天体离子由于其稳定性,小尺寸和移动它们所需的极低电流,有望用于构建下一代磁性存储器和自旋电子器件。尤其是,基于skyrmion的赛道存储器对于信息技术具有吸引力,其中skyrmion用于将信息存储为数据位而不是传统的域墙。在这里,我们用数值方法证明了天rm-天sky和天rm边缘排斥对基于天on的赛道记忆可行性的影响。研究了赛道上连续的天体离子钻头之间可靠且可行的间距以及对其进行调节的能力。在跑道的尽头发现了天体离子钻头的堵塞,导致天体离子尺寸的减小。此外,我们展示了一种有效而简单的方法来避免天体离子位的堵塞,从而确保消除读取元件之外的天体离子位。我们的结果为未来基于Skyrmion的赛道存储器的设计和开发提供了指导。

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