论文标题

Nife/Coo BiLayer微型磁盘中的界面交换耦合的三轴扭矩研究

Three-axis torque investigation of interfacial exchange coupling in a NiFe/CoO bilayer micromagnetic disk

论文作者

Dunsmore, M. G., Thibault, J. A., Fast, K. R., Sauer, V. T. K., Losby, J. E., Diao, Z., Belov, M., Freeman, M. R.

论文摘要

使用纳米力学谐振器上的Nife(Permalloy,Py)和氧化钴(COO)的千分尺直径双层用于研究交换偏差效应。通过切断一个扭转臂,增强了两个谐振轴的机械符合性,从而产生了独特的三轴谐振器,该谐振器对由三轴RF场产生的扭矩产生了共识。我们的技术允许同时测量三个正交扭矩组件。已经对与界面交换耦合效应相关的各向异性测量进行了测量。在低温温度下,对线性滞后环的观察证实了来自PY/COO界面的交换偏差。平面内旋转的直流偏置场用于通过平面外扭矩探测面内各向异性。观察到旋转滞后数据中的训练效应,并表明由于单向各向异性的实质性训练,界面耦合引起的特征并不会减小。来自旋转磁滞回路的数据与从宏道溶液到landau-lifshitz-gilbert方程的参数拟合。 Exchange偏差模型的每个参数说明了旋转环的特定特征。

Micrometer diameter bilayers of NiFe (permalloy, Py) and cobalt oxide (CoO) deposited on nanomechanical resonators were used to investigate exchange bias effects. The mechanical compliances of two resonator axes were enhanced by severing one torsion arm, resulting in a unique three-axis resonator that responds resonantly to torques generated by a three-axis RF field. Our technique permits simultaneous measurement of three orthogonal torque components. Measurements of the anisotropies associated with interfacial exchange coupling effects have been made. At cryogenic temperatures, observations of shifted linear hysteresis loops confirmed the presence of exchange bias from the Py/CoO interface. An in-plane rotating DC bias field was used to probe in-plane anisotropies through the out-of-plane torque. Training effects in the rotational hysteresis data were observed and showed that features due to interfacial coupling did not diminish irrespective of substantial training of the unidirectional anisotropy. The data from the rotational hysteresis loops were fit with parameters from a macrospin solution to the Landau-Lifshitz-Gilbert equation. Each parameter of the exchange bias model accounts for specific features of the rotational loop.

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