论文标题

建模不连贯应变介导的多效性贝内特时钟

Modeling Incoherent Strain Mediated Multiferroic Bennett Clocking

论文作者

Hu, 12111 Jin-Zhao, Domann, John P., Wang, Qianchang, Liang, Cheng-Yen, Keller, Scott, Carman, Gregory P., Sepulveda, Abdon E.

论文摘要

菌株介导的贝内特时钟直到最近才实验证明并遭受了高错误率。大多数用于解释这种行为的模型是宏生模型。这些模型的预测与实验设计不匹配,因为它们认为所有旋转都相干旋转并且没有磁弹性应变反馈。在本文中,使用了完全耦合的非线性模型(LLG Plus弹性动力学)来模拟电压诱导的Bennett时钟。这种建模捕获了完整的自旋动力学和形状各向异性。研究了两种材料(Ni和Terfenol-D),它们的交换长度非常不同。模拟结果表明,由于磁弹性耦合的单轴性质,可能发生不连贯的旋转。

Strain mediated Bennett clocking has only recently been experimentally demonstrated and suffered from high error rates. Most models used to explain this behavior are macrospin models. Predictions of these models do not match experimental designs since they consider all spins rotating coherently and no magnetoelastic strain feedback. In this paper a fully coupled nonlinear model (LLG plus elastodynamics) was used to simulate voltage induced Bennett clocking. This modelling captures the full spin dynamics as well as shape anisotropy. Two materials were studied (Ni and Terfenol-D) which have very different exchange lengths. The simulation results show that incoherent rotation may occur due to the uniaxial nature of the magnetoelastic coupling.

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