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Spin-transfer effects in MgO-based tunnel junctions with an out-of-plane free layer and an in-plane polarizer: Static states and steady-state precession

机译:具有平面外自由层和平面内偏振器的基于MgO的隧道结中的自旋转移效应:静态和稳态进动

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摘要

This paper aims to explore potential mechanisms for sustaining steady-state precession in MgO-based magnetic tunnel junctions (MTJ) with an in-plane polarizer and an out-of-plane free layer. The Landau-Lifshitz-Gilbert-Slonczewski equation is analytically and numerically solved for a nano-pillar MTJ with circular cross-section under constant perpendicular applied current and field. It is demonstrated that the spin torque angular asymmetry is sufficient to sustain the spin transfer torque-driven dynamics of spin-torque nano-oscillators.
机译:本文旨在探讨在面内偏振器和面外自由层上维持基于MgO的磁性隧道结(MTJ)中稳态进动的潜在机制。在恒定的垂直施加电流和电场的情况下,对具有圆形横截面的纳米柱MTJ进行了解析和数值求解,从而对Landau-Lifshitz-Gilbert-Slonczewski方程进行了解析和数值求解。已经证明,自旋扭矩角不对称足以维持自旋传递扭矩驱动的自旋扭矩纳米振荡器的动力学。

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