论文标题

非常规计算的磁性天际

Magnetic Skyrmions for Unconventional Computing

论文作者

Li, Sai, Kang, Wang, Zhang, Xichao, Nie, Tianxiao, Zhou, Yan, Wang, Kang L., Zhao, Weisheng

论文摘要

由于计算硬件的固有局限性,在过去几年中,计算性能的改善已大大减慢。但是,对数据计算的需求呈指数增长。为了解决这个问题,非常关注摩尔定律的持续缩放以及先进的非冯·诺伊曼计算体系结构。随着纳米级设备的快速发展,已经提高了各种非常规计算范例。磁性天际旋转的准粒子,由于其作为最小的信息载体的潜力通过利用其物理和动力学,因此对非常规计算的巨大期望受到了极大的期望。在本文中,我们概述了从关节设备应用的角度来看,基于天空的非常规计算的最新进展。本文旨在建立全景图片,分析剩余的挑战,最重要的是要阐明跨学科研究人员的基于天际的非常规计算的前景。

Improvements in computing performance have significantly slowed down over the past few years owing to the intrinsic limitations of computing hardware. However, the demand for data computing has increased exponentially. To solve this problem, tremendous attention has been focused on the continuous scaling of Moore's Law as well as the advanced non-von Neumann computing architecture. A rich variety of unconventional computing paradigms has been raised with the rapid development of nanoscale devices. Magnetic skyrmions, spin swirling quasiparticles, have been endowed with great expectations for unconventional computing due to their potential as the smallest information carriers by exploiting their physics and dynamics. In this paper, we provide an overview of the recent progress of skyrmion-based unconventional computing from a joint device-application perspective. This paper aims to build up a panoramic picture, analyze the remaining challenges, and most importantly to shed light on the outlook of skyrmion based unconventional computing for interdisciplinary researchers.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源