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Dynamic Circuit Model for Spintronic Devices

机译:用于旋转式设备的动态电路模型

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In this work we propose a finite-difference scheme based circuit model of a general spintronic device and benchmark it with other models proposed for spintronic switching devices. Our model is based on the four-component spin circuit theory and utilizes the widely used coupled stochastic magnetization dynamics/spin transport framework. In addition to the steady-state analysis, this work offers a transient analysis of carrier transport. By discretizing the temporal and spatial derivatives to generate a linear system of equations, we derive new and simple finite-difference conductance matrices that can, to the first order, capture both static and dynamic behaviors of a spintronic device. We also discuss an extension of the spin modified nodal analysis (SMNA) for time-dependent situations based on the proposed scheme.
机译:在这项工作中,我们提出了一种基于一般的闪光装置的电路模型,并与为Spintronic开关装置提出的其他模型进行基准测试。我们的模型基于四组件自旋电路理论,利用广泛使用的耦合随机磁化动力学/旋转运输框架。除稳态分析外,这项工作还提供了对载波运输的瞬态分析。通过使时间和空间衍生物产生线性系统的线性系统,我们推出了可以捕获到第一顺序的新的和简单的有限差异导电矩阵,捕获了旋转式设备的静态和动态行为。我们还讨论了基于所提出的计划的旋转修饰节点分析(SMNA)的延伸。

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