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Electrical Field-Induced Magnetization Switching in CoFe/NiFe/PZT Multiferroics

机译:CoFe / NiFe / PZT多铁中的电场感应磁化开关

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摘要

In this paper, we have investigated the change in magnetization of multiferroic material, based on magnetic nanostructured CoFe/NiFe film grown on the piezoelectric lead zirconate titanate (PZT), under the effect of the strain originated from PZT layer. In this material, a converse magnetoelectric effect and especially, an electric field-induced magnetic anisotropy and magnetization switching process have been observed at the changing stages of applied electric voltage. In addition, a significant relative change in magnetization, above 100%, is obtained, which facilitates practical applications of the materials. This opens possibilities in achieving new types of memory devices, the low energy consumption devices, as well as other functionalities, such as voltage-tunable field sensing. A simple theory based on strain-mediated magnetic-electric coupling is also presented to understand the origin of the change in magnetic properties of the materials.
机译:在本文中,我们研究了在铁酸锆钛酸铅(PZT)上生长的磁性纳米结构CoFe / NiFe膜在源自PZT层的应变的影响下,多铁材料的磁化强度变化。在这种材料中,在施加电压的变化阶段观察到相反的磁电效应,尤其是电场感应的磁各向异性和磁化切换过程。另外,获得了大于100%的显着的磁化相对变化,这有利于材料的实际应用。这为实现新型存储设备,低能耗设备以及其他功能(如电压可调场感应)提供了可能性。还提出了一种基于应变介导的电磁耦合的简单理论,以了解材料磁性能变化的起源。

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