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Parameter dependence of resonant spin torque magnetization reversal

机译:共振自旋转矩磁化反转的参数依赖性

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We numerically study ultra fast resonant spin torque (ST) magnetization reversal in magnetic tunneling junctions (MTJ) driven by current pulses having a direct current (DC) and a resonant alternating current (AC) component. The precessional ST dynamics of the single domain MTJ free layer cell are modeled in the macro spin approximation. The energy efficiency, reversal time, and reversal reliability are investigated under variation of pulse parameters like direct and AC current amplitude, AC frequency and AC phase. We find a range of AC and direct current amplitudes where robust resonant ST reversal is obtained with faster switching time and reduced energy consumption per pulse compared to purely direct current ST reversal. However, for a certain range of AC and direct current amplitudes a strong dependence of the reversal properties on AC frequency and phase is found. Such regions of unreliable reversal must be avoided for ST memory applications.
机译:我们通过数值研究超快共振自旋转矩(ST)的磁隧道结(MTJ)中的磁化反转,该过程由具有直流(DC)和共振交流(AC)分量的电流脉冲驱动。单域MTJ自由层单元的进动ST动力学在宏自旋近似中建模。研究了在直流和交流电流幅度,交流频率和交流相位等脉冲参数变化的情况下的能效,逆转时间和逆转可靠性。我们发现了一个交流和直流幅度范围,与纯直流ST反向相比,该电路可实现鲁棒的谐振ST反向,并具有更快的切换时间和更低的每脉冲能耗。然而,对于一定范围的交流和直流幅度,人们发现反转特性对交流频率和相位的强烈依赖性。对于ST存储器应用,必须避免这种不可靠的反转区域。

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