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Strain engineering induced interfacial self-assembly and intrinsic exchange bias in a manganite perovskite film

机译:应变工程在锰钙钛矿膜中引起界面自组装和固有交换偏置

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摘要

The control of complex oxide heterostructures at atomic level generates a rich spectrum of exotic properties and unexpected states at the interface between two separately prepared materials. The frustration of magnetization and conductivity of manganite perovskite at surface/interface which is inimical to their device applications, could also flourish in tailored functionalities in return. Here we prove that the exchange bias (EB) effect can unexpectedly emerge in a (La,Sr)MnO3 (LSMO) “single” film when large compressive stress imposed through a lattice mismatched substrate. The intrinsic EB behavior is directly demonstrated to be originating from the exchange coupling between ferromagnetic LSMO and an unprecedented LaSrMnO4-based spin glass, formed under a large interfacial strain and subsequent self-assembly. The present results not only provide a strategy for producing a new class of delicately functional interface by strain engineering, but also shed promising light on fabricating the EB part of spintronic devices in a single step.
机译:在原子水平上对复杂氧化物异质结构的控制会在两种单独制备的材料之间的界面处产生丰富的奇异性质和意外状态的光谱。钙钛矿型锰矿在表面/界面处的磁化强度和电导率受挫,这不利于其器件的应用,反过来,其定制功能也将蓬勃发展。在这里,我们证明,当通过晶格失配基板施加较大的压缩应力时,(La,Sr)MnO3(LSMO)“单”膜中可能会意外出现交换偏压(EB)效应。内在的EB行为直接证明是由铁磁LSMO与空前的LaSrMnO4基自旋玻璃之间的交换耦合引起的,该自旋玻璃是在较大的界面应变下形成的,并随后进行自组装。目前的结果不仅提供了通过应变工程生产新型精密功能界面的策略,而且还为一步一步制造自旋电子器件的EB部分提供了希望。

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