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Strain-engineering Mott-insulating La2CuO4

机译:应变工程莫特绝缘La2CuO4

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摘要

The transition temperature Tc of unconventional superconductivity is often tunable. For a monolayer of FeSe, for example, the sweet spot is uniquely bound to titanium-oxide substrates. By contrast for La2−xSrxCuO4 thin films, such substrates are sub-optimal and the highest Tc is instead obtained using LaSrAlO4. An outstanding challenge is thus to understand the optimal conditions for superconductivity in thin films: which microscopic parameters drive the change in Tc and how can we tune them? Here we demonstrate, by a combination of x-ray absorption and resonant inelastic x-ray scattering spectroscopy, how the Coulomb and magnetic-exchange interaction of La2CuO4 thin films can be enhanced by compressive strain. Our experiments and theoretical calculations establish that the substrate producing the largest Tc under doping also generates the largest nearest neighbour hopping integral, Coulomb and magnetic-exchange interaction. We hence suggest optimising the parent Mott state as a strategy for enhancing the superconducting transition temperature in cuprates.
机译:非常规超导的转变温度Tc通常是可调的。例如,对于单层FeSe,最佳点唯一地结合到氧化钛基底上。相比之下,对于La2-xSrxCuO4薄膜,这样的基板不是最理想的,而是使用LaSrAlO4获得最高的Tc。因此,一个艰巨的挑战是了解薄膜超导性的最佳条件:哪些微观参数驱动Tc的变化,我们如何调整它们?在这里,我们通过结合X射线吸收和共振非弹性X射线散射光谱论证了如何通过压缩应变来增强La2CuO4薄膜的库仑和磁交换相互作用。我们的实验和理论计算表明,在掺杂下产生最大Tc的衬底也产生了最大的最近邻居跳跃积分,库仑和磁交换相互作用。因此,我们建议优化母Mott态作为提高铜酸盐中超导转变温度的策略。

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