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Domain Wall Motion Control for Racetrack Memory Applications

机译:赛道记忆应用的域壁运动控制

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Increasing demand for large capacity data storage can only be fulfilled by hard disk drives (HDDs) and to some extent by solid-state drives (SSDs). However, HDDs are favorable in many applications, as they are approximately 5-10 times cheaper than SSDs. Attempts are being made to increase the capacity of HDDs by technologies such as heat-assisted magnetic recording and microwave assisted magnetic recording. However, increasing the capacity has been a slow process and there are limitations in achieving areal density above 10 Tbpsi. Thus, the introduction of new technologies is important for attaining high capacity. In this scenario, domain wall (DW) memory is a potential candidate, but there are still many unsolved issues. One of these is ensuring controlled and reliable motion of DWs along the nanowire. In this paper, we provide an overview of existing technologies and our attempts to control DW motion. Many methods of fabricating pinning centers have been proposed and demonstrated. These methods can mainly be categorized as 1) geometrical and 2) non-geometrical methods. In the first part, we review the geometrical approach to pin DWs. Later, we provide an overview of our approaches to create pinning centers using non-geometrical means. Non-geometrical approach provides more advantages as it provides a variety of choices to tailor the properties. In particular, this approach suits scalability.
机译:大容量数据存储需求的增长只能通过硬盘驱动器(HDD)来满足,并且在某种程度上可以通过固态驱动器(SSD)来满足。但是,HDD在许多应用中都是有利的,因为它们比SSD便宜约5-10倍。人们正在尝试通过热辅助磁记录和微波辅助磁记录等技术来增加HDD的容量。但是,增加容量是一个缓慢的过程,并且在达到10 Tbpsi以上的面密度时存在局限性。因此,引入新技术对于获得高容量很重要。在这种情况下,域墙(DW)内存是一个潜在的候选者,但是仍然存在许多未解决的问题。其中之一是确保DW沿着纳米线的受控且可靠的运动。在本文中,我们概述了现有技术以及控制DW运动的尝试。已经提出并证明了许多制造钉扎中心的方法。这些方法主要可分为1)几何方法和2)非几何方法。在第一部分中,我们回顾了销钉DW的几何方法。稍后,我们将概述使用非几何方法创建钉扎中心的方法。非几何方法提供了更多的优势,因为它提供了多种选择来定制属性。特别是,此方法适合可伸缩性。

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