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Picosecond electric field pulse induced coherent magnetic switching in MgO/FePt/Pt(001)-based tunnel junctions: a multiscale study

机译:基于MgO / FePt / Pt(001)的隧道结中皮秒级电场脉冲诱导的相干磁开关:多尺度研究

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摘要

Combined methods of first-principles calculations and Landau-Lifshitz-Gilbert (LLG) macrospin simulations are performed to investigate the coherent magnetization switching in the MgO/FePt/Pt(001)-based magnetic tunnel junctions triggered by short pulses of electric field through the control of magnetic anisotropy energy (MAE) electrically. First-principles calculations indicate that the MAE of MgO/FePt/Pt(001) film varies linearly with the change of the electric field, whereas the LLG simulations show that the change in MAE by electric field pulses could induce the in-plane magnetization reversal of the free layer by tuning the pulse parameters. We find that there exist a critical pulse width τ min to switch the in-plane magnetization, and this τ min deceases with the increasing pulse amplitude E 0. Besides, the magnetization orientation cannot be switched when the pulse width exceeds a critical value τ max, and τ max increases asymptotically with E 0. In addition, there exist some irregular switching areas at short pulse width due to the high precessional frequency under small initial angle. Finally, a successive magnetization switching can be achieved by a series of electric field pulses.
机译:结合第一性原理计算和Landau-Lifshitz-Gilbert(LLG)宏自旋模拟的方法,研究通过短脉冲电场通过MgO / FePt / Pt(001)产生的基于MgO / FePt / Pt(001)的磁性隧道结中的相干磁化转换。电控制磁各向异性能(MAE)。第一性原理计算表明,MgO / FePt / Pt(001)薄膜的MAE随电场的变化而线性变化,而LLG模拟表明,电场脉冲引起的MAE的变化可能引起面内磁化反转通过调整脉冲参数调整自由层的大小。我们发现存在一个临界脉冲宽度τ min 来切换面内磁化强度,并且该τ min 随着脉冲幅度E 0 的增加而降低。子>。此外,当脉冲宽度超过临界值τ max 时,磁化方向无法切换,τ max 随E 0 渐近增大。另外,由于在小初始角度下的高进动频率,在短脉冲宽度处存在一些不规则的切换区域。最后,可以通过一系列电场脉冲来实现连续的磁化切换。

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