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Local control of magnetic anisotropy in transcritical permalloy thin films using ferroelectric BaTiO3 domains

机译:使用铁电体BaTiO 3 域的跨临界坡莫合金薄膜的磁各向异性局部控制

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摘要

We investigated the local coupling between dense magnetic stripe domains in transcritical permalloy (tPy) thin films and ferroelectric domains of BaTiO single crystals in a tPy/BaTiO heterostructure. Two distinct changes in the magnetic stripe domains of tPy were observed from the magnetic force microscopy images after cooling the heterostructure from above the ferroelectric Curie temperature of BaTiO (120 °C) to room temperature. First, an abrupt break in the magnetic stripe domain direction was found at the ferroelectric a-c-domain boundaries due to an induced change in in-plane magnetic anisotropy. Second, the magnetic stripe domain period increased when coupled to a ferroelectric a-domain due to a change in out-of-plane magnetic anisotropy. Micromagnetic simulations reveal that local magnetic anisotropy energy from inverse magnetostriction is conserved between in-plane and out-of-plane components.
机译:我们研究了跨临界坡莫合金(tPy)薄膜中的致密磁条畴与tPy / BaTiO异质结构中BaTiO单晶的铁电畴之间的局部耦合。将异质结构从BaTiO的铁电居里温度(120 C)冷却至室温后,从磁力显微镜图像中观察到tPy的磁条区域出现两个明显的变化。首先,由于平面内磁各向异性的感应变化,在铁电a-c畴边界处发现了在磁条畴方向上的突然断裂。其次,由于平面外磁各向异性的变化,磁条畴周期在耦合到铁电a畴时增加。微观磁模拟表明,逆磁致伸缩产生的局部磁各向异性能量在平面内和平面外组件之间得以保留。

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