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Time resolved transport studies of magnetization reversal in orthogonal spin transfer magnetic tunnel junction devices

机译:正交自旋转移磁隧道结器件中磁化反转的时间分辨输运研究

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In this work we report on time resolved magnetization reversal driven by spin transfer torque in an orthogonal spin transfer (OST) magnetic tunnel junction device. We focus on the transitions from parallel (P) to antiparallel (AP) states and the reverse transitions (AP to P) under the influence of 10 ns voltage pulses. The electrical response is monitored with a fast real-time oscilloscope and thus timing information of the reversal process is obtained. The P to AP transition switching time decreases with increasing current and shows only direct switching behavior. The AP to P transition shows similar behavior, but has a broader distribution of switching times at high currents. The rare AP to P switching events that occur at later times are due to the occurrence of a pre-oscillation, which could be identified in time resolve voltage traces. A possible origin of these pre-oscillations is seen in micromagnetic simulations, where they are associated with the breakdown of the uniform precession of the magnetization, and lead to reversal of the magnetization at later times.
机译:在这项工作中,我们报告了在正交自旋转移(OST)磁性隧道结器件中由自旋转移转矩驱动的时间分辨的磁化反转。我们关注在10 ns电压脉冲的影响下,从并行(P)到反并行(AP)状态的跃迁以及反向跃迁(AP到P)。用快速实时示波器监视电响应,从而获得反转过程的时序信息。 P到AP的过渡切换时间随电流的增加而减少,并且仅显示直接切换行为。 AP到P的过渡表现出相似的行为,但在大电流下的开关时间分布更广泛。稍后发生的罕见的AP到P切换事件是由于预振荡的发生,可以在时间分辨电压迹线中识别出该预振荡。在微磁模拟中可以看到这些预振荡的可能起源,其中它们与磁化强度的均匀进动的破坏有关,并在以后导致磁化强度反转。

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