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Electric-field control of magnetism in multiferroic heterostructures

机译:多铁异质结构中磁场的电场控制

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With the fast development of information storage, exploiting new concepts for dense, fast, and non-volatile random access memory with reduced energy consumption is a significant and challenging task. To realize this goal, electric-field control of magnetism is crucial. In this regard, multiferroic materials are important and have attracted much attention due to their interesting new physics and potentials for exploring novel multifunctional devices. In the multiferroic materials, electric polarization can be tuned by applying an external magnetic field or vice versa. This magnetoelectric (ME) effect originates from the coupling of the magnetic and ferroelectric orders. However, single-phase multiferroic materials are rare and the multiferroic heterostructures, composed of ferromagnetic (FM) and ferroelectric (FE) materials, provide an alternative way for exploring the ME coupling effect. One of the key issues in the study of the FM/FE heterostructures is the control of magnetism via electric fields, which is essential for the new generation information storage technology.
机译:随着信息存储的快速发展,在降低能耗的情况下利用新概念来开发密集,快速且非易失性的随机存取存储器是一项艰巨而艰巨的任务。为了实现这一目标,磁场的磁场控制至关重要。在这方面,多铁性材料很重要,并且由于其有趣的新物理特性和探索新型多功能装置的潜力而引起了广泛的关注。在多铁性材料中,可以通过施加外部磁场来调节极化,反之亦然。磁电(ME)效应源自磁和铁电顺序的耦合。然而,单相多铁性材料很少见,由铁磁(FM)和铁电(FE)材料组成的多铁异质结构为探索ME耦合效应提供了另一种方法。 FM / FE异质结构研究的关键问题之一是通过电场控制磁场,这对于新一代信息存储技术至关重要。

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