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Electron–Phonon Coupling and Electron–Phonon Scattering in SrVO3

机译:SRVO3中的电子 - 声子耦合和电子 - 声子散射

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摘要

Understanding the physics of strongly correlated electronic systems has been a central issue in condensed matter physics for decades. In transition metal oxides, strong correlations characteristic of narrow d bands are at the origin of remarkable properties such as the opening of Mott gap, enhanced effective mass, and anomalous vibronic coupling, to mention a few. SrVO3 with V4+ in a 3d1 electronic configuration is the simplest example of a 3D correlated metallic electronic system. Here, the authors' focus on the observation of a (roughly) quadratic temperature dependence of the inverse electron mobility of this seemingly simple system, which is an intriguing property shared by other metallic oxides. The systematic analysis of electronic transport in SrVO3 thin films discloses the limitations of the simplest picture of e–e correlations in a Fermi liquid (FL); instead, it is shown show that the quasi‐2D topology of the Fermi surface (FS) and a strong electron–phonon coupling, contributing to dress carriers with a phonon cloud, play a pivotal role on the reported electron spectroscopic, optical, thermodynamic, and transport data. The picture that emerges is not restricted to SrVO3 but can be shared with other 3d and 4d metallic oxides.
机译:了解强烈相关电子系统的物理学在几十年来的凝聚态物理学中是一个核心问题。在过渡金属氧化物中,窄D带的强相关性具有显着性质的起源,例如燃材差距的开口,增强的有效质量和异常的振动耦合,提及少数。 SRVO3在3D1中的V4 +电子配置是3D相关金属电子系统的最简单示例。在这里,作者的重点是观察(大致)这种看似简单的系统的逆电子迁移率的二次温度依赖性,这是由其他金属氧化物共享的有趣性。 SRVO3薄膜电子传输的系统分析公开了FERMI液体(FL)中最简单图像的最简单图像的限制;相反,示出了表明,费米表面(FS)的准2D拓扑结构和强电子 - 声子耦合,有助于与声子云的穿着载体,在报告的电子光谱,光学,热力学中发挥枢轴作用,和运输数据。出现的图片不限于SRVO3,但可以与其他3D和4D金属氧化物共享。

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