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Electric-field-induced reorientation and flip in domain magnetization and light diffraction in an yttrium-iron-garnet/lead-zirconate-titanate bilayer

机译:钇铁石榴石/锆钛酸铅双分子层中电场诱导的取向和磁畴翻转及光衍射

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摘要

A continuous reorientation and an abrupt flip to a canted structure in the magnetization of stripe domains are observed under the influence of an electric field in an yttrium-iron-garnet (YIG)/lead-zirconate-titanate (PZT) bilayer. Magneto-optic techniques have been utilized for the observation of the domain structure and the magnetization flip. It is found that electrically generated mechanical stress in PZT induces an uniaxial anisotropy field in YIG, which is large enough to initially cause a gradual change in the domain magnetization and then a transition from out-of-plane orientation to a canted state for a threshold electric field. Additional evidence for the spin flip has been obtained from data on the modulation of intensity of linearly polarized light due to diffraction by the stripe domains. A comprehensive theory for the voltage-induced magnetization flip is discussed and compared with the data. The magnetic transitions and the theory discussed here are of interests for electric-field-controlled magneto-optic and spintronic devices.
机译:在电场作用下,钇铁石榴石(YIG)/锆钛酸铅(PZT)双层中观察到了条带磁化的连续重新取向和突然翻转成倾斜结构。磁光技术已被用于观察畴结构和磁化翻转。发现在PZT中电产生的机械应力会在YIG中感应出一个单轴各向异性场,该场足够大,最初会引起畴磁化强度的逐渐变化,然后在阈值范围内从平面外取向过渡到倾斜状态。电场。自旋翻转的其他证据已经从关于由于条带域的衍射引起的线性偏振光的强度调制的数据中获得。讨论了电压感应磁化翻转的综合理论,并与数据进行了比较。此处讨论的磁跃迁和理论对电场控制的磁光和自旋电子器件很感兴趣。

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