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首页> 外文期刊>The European physical journal, B. Condensed matter physics >EELS study of interfaces in magnetoresistive LSMO/STO/LSMO tunnel junctions
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EELS study of interfaces in magnetoresistive LSMO/STO/LSMO tunnel junctions

机译:磁阻LSMO / STO / LSMO隧道结界面的EELS研究

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摘要

A magnetic tunnel junction consists of two ferromagnetic conducting electrodes separated by an insulating thin layer. The performance of such a system strikingly depends on the last conducting atomic layers in contact with the insulator. Consequently, the present paper reports a nanoscale electron energy loss spectroscopy (EELS) study, which has been performed across a couple of La_(0.66)Sr_(0.33)MnO_3,/SrTiO_3/La_(0.66)Sr_(0.33)MnO_3 tunnel junctions with different barrier thicknesses (1.5 nm and 5 nm respectively). It aims at determining not only the chemical composition in the interface areas, but also the effect of the neighbouring atoms on their electronic structure. Using recent improvements in the STEM-EELS data acquisition and processing techniques (systematic use of spectrum-line and spetrum-image modes, multivariate statistical analysis, 2D energy deconvolution schemes, etc.), the local chemical information is better extracted with shorter acquisition times, while the large increase of the data set contributes to validate the results. Within the accuracy level of these measurements, the elemental composition of the different phases remains stable up to the interfaces with no evidence of extra doping. Furthermore, weak changes on the Mn-2p edge fine structures (weak shift to lower energy loss values and extra splitting on the top of the Mn L_3 line are observed on all the interfaces. They are interpreted as a consequence of a slight reduction of the local Mn valence likely accompanied by a strain induced change in local symmetry. The discussion is focussed on all spectral changes identified at a (sub)nanometer scale and their potential effects on the degradation of magnetic and transport properties measured, close to room temperature, at a macroscopic level.
机译:磁性隧道结由两个由绝缘薄层隔开的铁磁导电电极组成。这种系统的性能惊人地取决于与绝缘体接触的最后一个导电原子层。因此,本论文报道了纳米级电子能量损失谱(EELS)研究,该研究已在La_(0.66)Sr_(0.33)MnO_3,/ SrTiO_3 / La_(0.66)Sr_(0.33)MnO_3隧道结与不同的阻挡层厚度(分别为1.5 nm和5 nm)。它不仅旨在确定界面区域的化学组成,而且还旨在确定相邻原子对其电子结构的影响。利用STEM-EELS数据采集和处理技术的最新改进(系统地使用频谱线和频谱图像模式,多元统计分析,二维能量反卷积方案等),可以在较短的采集时间内更好地提取局部化学信息。 ,而数据集的大量增加有助于验证结果。在这些测量的准确度范围内,不同相的元素组成直至界面都保持稳定,没有额外掺杂的迹象。此外,在所有界面上都观察到了Mn-2p边缘精细结构的微弱变化(微弱移动至较低的能量损失值,并在Mn L_3线的顶部出现了额外的分裂)。 Mn的局部价可能与应变引起的局部对称性变化有关,讨论的重点是在(亚)纳米尺度上确定的所有光谱变化及其在接近室温,室温下对磁和输运性能退化的潜在影响。宏观层面。

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