空中骑兵
神经形态工程学
计算机科学
人工神经网络
逻辑门
实现(概率)
自旋电子学
电子线路
电子工程
可编程逻辑器件
自旋(空气动力学)
感知器
记忆电阻器
拓扑(电路)
和大门
晶体管
CMOS芯片
有限状态机
一般化
物理
执行机构
电气工程
深度学习
纳米机电系统
国家(计算机科学)
作者
Shubhi Verma,Aman Khosla,Rohit Medwal,Animesh K. Ojha,Surbhi Gupta
摘要
Spin-texture based devices have recently gained significant attention for their potential in designing and developing logic circuits and neural networks, leading us to explore beyond conventional computing paradigms. Among various spin textures, magnetic skyrmions are found to be promising candidates due to their topological stability, nanoscale size, and low-current-driven dynamics. However, the practical realization of skyrmion-based devices remains challenging due to the reliance on external magnetic fields or electrostatic gating, which complicates device architecture and limits on-chip integration. In this study, we investigate spin current-driven, field-free skyrmion-induced spiking dynamics and logic operations in bilayer nanotrack consisting of a ferromagnetic layer interfaced with a heavy metal. We first investigate the nucleation dynamics of skyrmions and identify two distinct states: stable configuration and dynamical state exhibiting breathing mode oscillations. These oscillations give rise to regular periodic auto-spiking behavior in dynamical skyrmions with a tunable spiking frequency controlled by the applied spin-polarized current. Exploiting this behavior, we designed a skyrmion-based spiking neural network demonstrating a classification accuracy of 87.50% on the Modified National Institute of Standards and Testing handwritten digit dataset. Furthermore, we have also examined the dynamics of stable skyrmion in a device with stepped geometry which introduces a potential barrier and enables both AND and OR logic operations within the same device utilizing spin–orbit torque. This dual functionality of skyrmion-based device enabling both neuromorphic computing and versatile logic operations within a single device offers a promising pathway toward highly efficient, field-free spintronic devices.
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