首页> 外文会议>2015 IEEE Magnetics Conference >Electric field manipulated nonvolatile and reversible 90°-rotation of the magnetic easy-axis in LSMO/PMN-PT (011) multiferroic heterostructures
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Electric field manipulated nonvolatile and reversible 90°-rotation of the magnetic easy-axis in LSMO/PMN-PT (011) multiferroic heterostructures

机译:电场控制的LSMO / PMN-PT(011)多铁异质结构中磁易轴的非易失性且可逆90°旋转

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摘要

Using pure electric voltages instead of magnetic fields or large currents to manipulate magnetisms in multiferroic heterostructures is a goal for future low-power spintronics such as electric-writing magnetic-reading memories. Usually, the electric manipulation to magnetism shows a volatile effect which cannot be used for information storage,[1] because the magnetic variation vanishes after the electric field removal. Recently, the piezostrain-mediated non-volatile 90° and 180° magnetization rotations are realized in the Co/0.7Pb(MgNb)O-0.3PbTiO multiferroic heterostructures at room temperature.[2] However, the non-volatile magnetization rotations in perovskite manganese systems, which are of significance for the design of perovskite magnetic random access memories such as perovskite magnetic tunneling junctions, are still rarely studied. Here we report an in-situ electric field manipulated nonvolatile and reversible 900-rotation of the magnetic easy-axis (MEA) in LaSrMnO/0.7Pb(MgNb)O-0.3PbTiO (LSMO/PMN-PT) multiferroic heterostructure.
机译:使用纯电压代替磁场或大电流来操纵多铁性异质结构中的磁性是未来低功耗自旋电子器件(例如电写入磁读取存储器)的目标。通常,对电磁的电操纵会显示出一种不稳定的效应,该效应不能用于信息存储,[1]因为在去除电场后磁变化消失了。最近,在室温下,Co / 0.7Pb(MgNb)O-0.3PbTiO多铁性异质结构实现了压电应变介导的90°和180°非易失性磁化旋转[2]。但是,对于钙钛矿磁性随机存取存储器如钙钛矿磁性隧道结的设计具有重要意义的钙钛矿锰系统中的非易失性磁化旋转仍然很少被研究。在这里,我们报告原位电场操纵的LaSrMnO / 0.7Pb(MgNb)O-0.3PbTiO(LSMO / PMN-PT)多铁异质结构中的磁易轴(MEA)的非易失性和可逆900旋转。

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