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APS -APS March Meeting 2017 - Event - Short-ranged spin correlations and electronic nematicity in the pnictides: theoretical framework and application to elasto-scanning tunneling microscopy data

机译:APS -APS 2017年3月会议-事件-短程自旋相关性和光电子学向列:理论框架及其在弹性扫描隧道显微镜数据中的应用

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The origin of electronic nematic order in iron-based superconductors is a hotly debated topic, with potential implications for superconducting pairing mechanism in these and other systems. Scanning tunneling microscopy experiments on Co-doped NaFeAs performed in the presence of elastic strain generated by piezoelectric devices reveal a rich temperature and doping dependence of the anisotropy of the electronic states both in real-space and momentum-space. Here, we argue that these observations are consistent with modest symmetry-breaking strain fields inducing unidirectional large-amplitude magnetic fluctuations even in the paramagnetic state. We present a theoretical model describing these effects and their coupling to low-energy electronic states, and discuss the constraints imposed by the experimental data on the character of the magnetic fluctuations.
机译:铁基超导体中电子向列序的起源是一个备受争议的话题,对这些系统和其他系统中的超导配对机制具有潜在的影响。在存在压电器件产生的弹性应变的情况下,对共掺杂NaFeAs进行的扫描隧道显微镜实验表明,在真实空间和动量空间中,电子态的各向异性都具有丰富的温度和掺杂依赖性。在这里,我们认为这些观察结果与适度的对称破坏应变场一致,即使在顺磁状态下,该应变场也会引起单向大振幅磁涨落。我们提出了一个理论模型,描述了这些效应及其与低能电子态的耦合,并讨论了实验数据对磁涨落特征的限制。

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