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Interface-induced spontaneous positive and conventional negative exchange bias effects in bilayer La0.7Sr0.3MnO3/Eu0.45Sr0.55MnO3 heterostructures

机译:界面La0.7Sr0.3MnO3 / Eu0.45Sr0.55MnO3异质结构中界面诱导的自发正负交换偏置效应

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摘要

We report zero-field-cooled spontaneous-positive and field-cooled conventional-negative exchange bias effects in epitaxial bilayer composed of La0.7Sr0.3MnO3 (LSMO) with ferromagnetic (FM) and Eu0.45Sr0.55MnO3 (ESMO) with A-type antiferromagnetic (AF) heterostructures respectively. A temperature dependent magnetization study of LSMO/ESMO bilayers grown on SrTiO3 (001) manifest FM ordering (TC) of LSMO at ~320 K, charge/orbital ordering of ESMO at ~194 K and AF ordering (TN) of ESMO at ~150 K. The random field Ising model has demonstrated an interesting observation of inverse dependence of exchange bias effect on AF layer thickness due to the competition between FM-AF interface coupling and AF domain wall energy. The isothermally field induced unidirectional exchange anisotropy formed at the interface of FM-LSMO layer and the kinetically phase-arrested magnetic phase obtained from the metamagnetic AF-ESMO layer could be responsible for the spontaneous exchange bias effect. Importantly, no magnetic poling is needed, as necessary for the applications. The FM-AF interface exchange interaction has been ascribed to the AF coupling with JexSFMSAF (Jex ≈ JAF, coupling constant between AF spins) for the spontaneous positive hysteresis loop shift, and the field-cooled conventional exchange bias has been attributed to the ferromagnetically exchanged interface with Jex ≈ JF (coupling constant between FM spins).
机译:我们报告了由La0.7Sr0.3MnO3(LSMO)与铁磁(FM)和Eu0.45Sr0.55MnO3(ESMO)与A-组成的外延双层中的零场冷自发正和场冷常规负交换偏置效应类型的反铁磁(AF)异质结构。在SrTiO3(001)上生长的LSMO / ESMO双层的依赖温度的磁化研究表明,LSMO的FM有序(TC)为〜320 K,ESMO的电荷/轨道有序为〜194 K和ESMO的AF有序(TN)为〜150 K.随机场Ising模型已证明,由于FM-AF界面耦合与AF域壁能之间的竞争,交换偏置效应对AF层厚度具有反依赖性的有趣观察。在FM-LSMO层与由亚磁性AF-ESMO层获得的动力学上被捕的磁性相之间的界面上形成的等温场诱导的单向交换各向异性可能是自发交换偏置效应的原因。重要的是,根据应用的需要,不需要磁极化。 FM-AF接口交换交互已归因于与 < mo> ∑ J e x S FM < / msub> S AF (自发性正磁滞回线位移的Jex≈JAF,AF自旋之间的耦合常数),以及场致冷的常规交换偏置已归因于与Jex≈JF的铁磁交换界面(FM自旋之间的耦合常数)。

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