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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Room temperature electric-field control of magnetism in layered oxides with cation order
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APS -APS March Meeting 2017 - Event - Room temperature electric-field control of magnetism in layered oxides with cation order

机译:APS -APS 2017年3月会议-活动-具有阳离子顺序的层状氧化物中磁场的室温电场控制

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Searching for materials with room-temperature electric-field control of magnetism has interested researchers for many years with three-dimensional perovskite BiFeO3-based compounds as the main focus. Here we choose the layered hybrid improper ferroelectric Ruddlesden-Popper oxides as a platform from which to realize electric field controllable magnetism, leveraging a recently identified strain tunable polar-to-nonpolar (P-NP) transition. We first propose a design principle for selecting the required A and B cation chemistries that ensure strained A3B2O7 (001) --oriented films exhibit the P-NP transitions, which we substantiate with density functional calculations. We next extend our guideline to B-site ordered A3BB$prime $O7 oxides to expand the number of available compounds exhibiting P-NP transitions. We then demonstrate electric-field controllable weak ferromagnetism at the boundary of the P-NP transition in magnetic (001) A3BB$prime $O7 films and propose new compounds for route to room temperature magnetoelectric multiferroics.
机译:多年来,寻找具有磁性的室温电场控制材料的研究人员一直对以三维钙钛矿BiFeO3基化合物为主要研究对象感兴趣。在这里,我们利用分层混合的不正确铁电Ruddlesden-Popper氧化物作为平台,利用最近确定的应变可调极性到非极性(P-NP)跃迁来实现电场可控的磁性。我们首先提出一种设计原则,用于选择所需的A和B阳离子化学物质,以确保应变的A3B2O7(001)取向薄膜表现出P-NP跃迁,我们通过密度泛函计算来证实这一点。接下来,我们将指南扩展到B站点订购的A3BB $ prime $ O7氧化物,以扩大具有P-NP跃迁的可用化合物的数量。然后,我们证明了在磁性(001)A3BB $ prime $ O7薄膜中P-NP跃迁的边界处的电场可控弱铁磁性,并提出了通往室温磁电多铁化合物的新化合物。

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