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Interface properties of magnetic tunnel junction La0.7Sr0.3MnO3/SrTiO3 superlattices studied by standing-wave excited photoemission spectroscopy

机译:驻波激发光发射光谱法研究磁性隧道结La0.7Sr0.3MnO3 / SrTiO3超晶格的界面性质

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摘要

The chemical and electronic-structure profiles of magnetic tunnel junction (MTJ) La0.7Sr0.3MnO3/SrTiO3 (LSMO/STO) superlattices have been quantitatively determined via soft and hard x-ray standing-wave excited photoemission, x-ray absorption and x-ray reflectivity, in conjunction with x-ray optical and core-hole multiplet theoretical modeling. Epitaxial superlattice samples consisting of 48 and 120 bilayers of LSMO and STO, each nominally four unit cells thick, and still exhibiting LSMO ferromagnetism, were studied. By varying the incidence angle around the superlattice Bragg condition, the standing wave was moved vertically through the interfaces. By comparing experiment to x-ray optical calculations, the detailed chemical profile of the superlattice and its interfaces was quantitatively derived with angstrom precision. The multilayers were found to have a small ∼6% change in periodicity from top to bottom. Interface compositional mixing or roughness over ∼6 Å was also found, as well as a significant change in the soft x-ray optical coefficients of LSMO near the interface. The soft x-ray photoemission data exhibit a shift in the position of the Mn 3p peak near the interface, which is not observed for Mn 3s. Combined with core-hole multiplet theory incorporating Jahn-Teller distortion, these results indicate a change in the Mn bonding state near the LSMO/STO interface. Our results thus further clarify the reduced (MTJ) performance of LSMO/STO compared to ideal theoretical expectations.
机译:磁性隧道结(MTJ)La0.7Sr0.3MnO3 / SrTiO3(LSMO / STO)超晶格的化学和电子结构剖面已通过软和硬x射线驻波激发光发射,x射线吸收和x定量确定射线反射率,结合X射线光学和核孔多重态理论模型。研究了由48个和120个双层LSMO和STO组成的外延超晶格样品,每个样品名义上为4个单位晶格的厚度,并且仍表现出LSMO铁磁性。通过改变超晶格布拉格条件附近的入射角,驻波在界面上垂直移动。通过将实验与X射线光学计算进行比较,以埃精确度定量得出了超晶格及其界面的详细化学分布。发现多层从顶部到底部的周期变化很小〜6%。还发现界面成分混合或粗糙度超过约6Å,以及界面附近LSMO的软X射线光学系数发生了显着变化。软X射线光发射数据显示出界面附近Mn 3p峰的位置发生了位移,而对于Mn 3s则未观察到。结合结合了Jahn-Teller变形的核孔多重态理论,这些结果表明LSMO / STO界面附近的Mn键态发生了变化。因此,我们的结果进一步阐明了与理想理论预期相比,LSMO / STO的(MTJ)性能降低。

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