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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Electronic structure of strained (La_(0.85)Ba_(0.15))MnO_3 thin films with room-temperature ferromagnetism investigated by hard x-ray photoemission spectroscopy
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Electronic structure of strained (La_(0.85)Ba_(0.15))MnO_3 thin films with room-temperature ferromagnetism investigated by hard x-ray photoemission spectroscopy

机译:硬质X射线光发射光谱法研究具有室温铁磁性的(La_(0.85)Ba_(0.15))MnO_3薄膜的电子结构

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摘要

We report the bulk sensitive hard x-ray (hν=5.95 keV) core level photoemission spectroscopy to investigate the intrinsic electronic structure of strained (La_(0.85)Ba_(0.15))MnO_3 thin films. In a 20 nm thick well-strained film with strongly enhanced ferromagnetism, a new sharp satellite peak appeared at the low energy site of the Mn 2p_(3/2) main peak; whereas, a broader signal was observed for the unstrained film with 300 nm thickness. Cluster calculations revealed that the intensity corresponded to the density of the state at the Fermi level relating to the magnitude of the ferromagnetic order. The satellite intensity also agreed quantitatively with the square of the magnetization.
机译:我们报告了体敏硬x射线(hν= 5.95 keV)核心水平的光发射光谱,以研究应变的(La_(0.85)Ba_(0.15))MnO_3薄膜的固有电子结构。在铁磁性强烈增强的20 nm厚应变薄膜​​中,在Mn 2p_(3/2)主峰的低能位出现了一个新的尖锐的卫星峰。然而,对于厚度为300 nm的未应变薄膜,观察到的信号较宽。聚类计算表明,强度对应于费米能级的状态密度,该强度与铁磁阶的大小有关。卫星强度也与磁化强度的平方在数量上一致。

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