首页> 外文期刊>The European physical journal, B. Condensed matter physics >Spin transfer torque in non-collinear magnetic tunnel junctions exhibiting quasiparticle bands: a non-equilibrium Green's function study
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Spin transfer torque in non-collinear magnetic tunnel junctions exhibiting quasiparticle bands: a non-equilibrium Green's function study

机译:在展示Quasiparticle Bands中的非共线磁隧道结中的旋转传递扭矩:非平衡绿色的功能研究

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摘要

A non-equilibrium Green's function formulation to study the spin transfer torque (STT) in non-collinear magnetic tunnel junctions (MTJs) exhibiting quasiparticle bands is developed. The formulation can be used to study the magnetoresistance and spin current too. The formulation is used to study the STT in model tunnel junctions exhibiting multiple layers and quasiparticle bands. The many body interaction that gives rise to quasiparticle bands is assumed to be a s-f exchange interaction at the electrode regions of the MTJ. The quasiparticle bands are obtained using a many body procedure and the single particle band structure is obtained using the tight binding model. The bias dependence of the STT as well as the influence of band occupancy and s-f exchange coupling strength on the STT are studied. We find from our studies that the band occupancy plays a significant role in deciding the STT and the s-f interaction strength too influences the STT significantly. Anomalous behavior in both the parallel and perpendicular components of the STT is obtained from our studies. Our results obtained for certain values of the band occupation are found to show the trend observed from the experimental measurements of STT.
机译:开发出非平衡绿色的功能制剂,用于研究表现出Quasiparicle带状频带的非共线磁隧道结(MTJ)的自旋转移扭矩(STT)。该配方可用于研究磁阻和旋转电流。该配方用于研究表现出多层和Quasiparticle带的模型隧道结中的STT。在MTJ的电极区域假设产生Quasiplical Bands的许多主体相互作用是MTJ的电极区域的S-F换互操作。使用许多主体程序获得Quasiparticle带,并且使用紧密结合模型获得单个粒子带结构。研究了STT的偏置依赖性以及带占用率和S-F兑换耦合强度对STT的影响。我们从我们的研究中发现,乐队占用率在确定STT和S-F的相互作用强度显着影响STT的重要作用。 STT的平行和垂直组分的异常行为是从我们的研究获得的。我们发现我们获得了某些带占用值的结果,以显示出从STT的实验测量中观察到的趋势。

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