首页> 外文会议>2010 18th Biennial University/Government/Industry Micro/Nano Symposium >Self-Consistent Transport-Magnetic Simulation and Benchmarking of Hybrid Spin-Torque Driven Magnetic Tunnel Junctions (MTJs)
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Self-Consistent Transport-Magnetic Simulation and Benchmarking of Hybrid Spin-Torque Driven Magnetic Tunnel Junctions (MTJs)

机译:混合自旋转矩驱动磁隧道结(MTJ)的自洽输运磁模拟和基准测试

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We investigate electronic transport and magnetization dynamics associated with the current induced spin torque effects in two different classes of magnetic tunnel junctions using Non-Equilibrium Green's Function (NEGF) formalism and Landau-Lifshitz-Gilbert (LLG) equation. We calibrate our transport simulation framework with a diverse set of tri-layer experiments, before we proceed with dual barrier penta-layer MTJ simulations. We investigate and thereby compare the magnetization switching dynamics of a tri-layer with that of an anti-aligned penta-layer MTJ corresponding to parallel (P) to anti-parallel (AP) switching and vice versa. Higher critical switching current density (JC) and asymmetric switching characteristics have been confirmed for tri-layer structures as opposed to the case of identical anti-aligned penta-layer configurations. Energy efficiency of anti-aligned penta-layer over that of tri-layer MTJ structures during spin torque driven magnetization switching has also been reported quantitatively.
机译:我们使用非平衡格林函数(NEGF)形式主义和Landau-Lifshitz-Gilbert(LLG)方程,研究与电流感应的自旋转矩效应相关的电子传输和磁化动力学,该效应在两种不同类型的磁性隧道结中发生。在继续进行双势垒五层MTJ仿真之前,我们使用各种三层实验来校准运输仿真框架。我们研究并由此比较了三层的磁化转换动力学与对应于并行(P)到反平行(AP)转换的反对齐五层MTJ的磁化转换动力学,反之亦然。与相同的反对准五层结构的情况相反,三层结构已确认更高的临界开关电流密度(JC)和不对称开关特性。还已经定量报告了在自旋扭矩驱动的磁化切换过程中,抗取向五层相对于三层MTJ结构的能效。

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