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A General Circuit Model for Spintronic Devices Under Electric and Magnetic Fields

机译:电磁场下旋转式装置的通用电路模型

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In this work, we present a circuit model of diffusive spintronic devices capable of capturing the effects of both electric and magnetic fields. Starting from a modified version of the well-established drift-diffusion equations, we derive general equivalent circuit models of semiconducting/metallic nonmagnets and metallic ferromagnets. In contrast to other models that are based on steady-state transport equations which might also neglect certain effects such as thermal fluctuations, spin dissipation in the ferromagnets, and spin precession under magnetic fields, our model incorporates most of the important physics and is based on a time-dependent formulation. An application of our model is shown through simulations of a nonlocal spin-valve under the presence of a magnetic field, where we reproduce experimental results of electrical measurements that demonstrate the phenomena of spin precession and dephasing ("Hanle effect").
机译:在这项工作中,我们介绍了一种能够捕获电场的效果的扩散旋转式装置的电路模型。从良好的漂流漂移扩散方程的改进版本开始,我们推出了半导体/金属非混凝土和金属铁磁体的一般等效电路模型。与基于稳态传输方程的其他模型相比,这些模型也可能忽视某些效果,例如热量波动,在磁场下的铁圆磁带中的旋转耗散,我们的模型包含大部分重要物理并基于一种时间依赖的制剂。我们的模型的应用是通过在磁场的存在下的非局部旋转阀的模拟中示出的,在那里我们再现电测量的实验结果,证明了旋转预测和脱离的现象(“Hanle效应”)。

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