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Picoscale structural insight into superconductivity of monolayer FeSe/SrTiO3

机译:Picoscale结构洞察Monolayer Fese / Srtio3的超导性

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Remarkable enhancement of the superconducting transition temperature ( T subc/sub) has been observed for monolayer (ML) FeSe films grown on SrTiOsub3/sub substrates. The atomic-scale structure of the FeSe/SrTiOsub3/sub interface is an important determinant of both the magnetic and interfacial electron-phonon interactions and is a key ingredient to understanding its high- T subc/sub superconductivity. We resolve the atomic-scale structure of the FeSe/SrTiOsub3/sub interface through a complementary analysis of scanning transmission electron microscopy and in situ surface x-ray diffraction. We find that the interface is more strongly bonded for a particular registration, which leads to a coherently strained ML. We also determine structural parameters, such as the distance between ML FeSe and the oxide, Se─Fe─Se bond angles, layer-resolved distances between Fe─Se, and registry of the FeSe lattice relative to the oxide. This picoscale structure determination provides an explicit structural framework and constraint for theoretical approaches addressing the high- T subc/sub mechanism in FeSe/SrTiOsub3/sub.
机译:对于在SRTIO 3 底物上生长的单层(ml)FESE膜,已经观察到超导转变温度(T c )的显着提高。 FESE / SRTIO 3 界面的原子级结构是磁性和界面电子 - 声子相互作用的重要决定因素,是理解其高T c的关键成分。子>超导性。通过扫描透射电子显微镜和原位表面X射线衍射来解析FESE / SRTIO 3 界面的原子尺度结构。我们发现该界面更强烈地粘合到特定的登记,这导致了一个连贯的毫克。我们还确定结构参数,例如ML FESE和氧化物之间的距离,SE --FE - FE - FE - SE和FESE晶格之间的层分辨距离相对于氧化物。这种Picoscale结构确定提供了一种明确的结构框架和解决FESE / SRTIO 3 中的高T c 机制的理论方法的约束。

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