论文标题
由基于天空的旋转扭矩纳米振荡器构建的尖刺神经元
A spiking neuron constructed by the skyrmion-based spin torque nano-oscillator
论文作者
论文摘要
磁性天空是类似粒子的拓扑旋转构型,可以携带二进制信息,因此是未来自旋设备的有希望的构建块。在这项工作中,我们研究了基于天空的旋转扭矩纳米振荡器中的天际动力学与注入电流的特性之间的关系,在此引起源是从纳米风险的中心的点纳米接触引入的激发源。发现,如果天空由纳米风格的中心移动,如果它是由自旋极化电流驱动的。但是,在没有刺激的情况下,它将返回到初始位置。因此,我们提出了一个基于天际的人工尖峰神经元,可以有效地实施泄漏的综合爆炸操作。我们通过使用微磁模拟研究了基于天际的尖峰神经元的可行性。我们的结果可能提供有用的指南,以建立具有超高密度和超低能量消耗的未来磁性神经网络。
Magnetic skyrmions are particle-like topological spin configurations, which can carry binary information and thus are promising building blocks for future spintronic devices. In this work, we investigate the relationship between the skyrmion dynamics and the characteristics of injected current in a skyrmion-based spin torque nano-oscillator, where the excitation source is introduced from a point nano-contact at the center of the nanodisk. It is found that the skyrmion will move away from the center of the nanodisk if it is driven by a spin-polarized current; however, it will return to the initial position in the absence of stimulus. Therefore, we propose a skyrmion-based artificial spiking neuron, which can effectively implement the leaky-integrate-fire operation. We study the feasibility of the skyrmion-based spiking neuron by using micromagnetic simulations. Our results may provide useful guidelines for building future magnetic neural networks with ultra-high density and ultra-low energy consumption.