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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >SPICE modelling of magnetic tunnel junctions written by spin-transfer torque
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SPICE modelling of magnetic tunnel junctions written by spin-transfer torque

机译:自旋转移矩写的磁性隧道结的SPICE建模

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摘要

Spintronics aims at extending the possibility of conventional electronics by using not only the charge of the electron but also its spin. The resulting spintronic devices, combining the front-end complementary metal oxide semiconductor technology of electronics with a magnetic back-end technology, employ magnetic tunnel junctions (MTJs) as core elements. With the intent of simulating a circuit without fabricating it first, a reliable MTJ electrical model which is applicable to the standard SPICE (Simulation Program with Integrated Circuit Emphasis) simulator is required. Since such a model was lacking so far, we present a MTJ SPICE model whose magnetic state is written by using the spin-transfer torque effect. This model has been developed in the C language and validated on the Cadence Virtuoso Platform with a Spectre simulator. Its operation is similar to that of the standard BSIM (Berkeley Short-channel IGFET Model) SPICE model of the MOS transistor and fully compatible with the SPICE electrical simulator. The simulation results obtained using this model have been found in good accord with those theoretical macrospin calculations and results.
机译:自旋电子学旨在通过不仅利用电子电荷而且利用电子自旋来扩展传统电子学的可能性。最终的自旋电子器件将电子学的前端互补金属氧化物半导体技术与磁性后端技术相结合,采用了磁性隧道结(MTJ)作为核心元素。为了在不首先制造电路的情况下进行电路仿真,就需要一种适用于标准SPICE(带有集成电路重点的仿真程序)仿真器的可靠MTJ电气模型。由于目前尚缺乏这种模型,因此我们提出了一种MTJ SPICE模型,其磁性状态是通过使用自旋转移转矩效应来写入的。该模型已用C语言开发,并在带有Spectre模拟器的Cadence Virtuoso平台上进行了验证。其操作类似于MOS晶体管的标准BSIM(伯克利短通道IGFET模型)SPICE模型,并且与SPICE电气模拟器完全兼容。已经发现使用该模型获得的仿真结果与理论上的宏自旋计算和结果非常吻合。

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