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Unconventional charge order in a co-doped high-Tc superconductor

机译:共掺杂高Tc超导体中的非常规电荷顺序

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摘要

Charge-stripe order has recently been established as an important aspect of cuprate high-Tc superconductors. However, owing to the complex interplay between competing phases and the influence of disorder, it is unclear how it emerges from the parent high-temperature state. Here we report on the discovery of an unconventional ordered phase between charge-stripe order and (pseudogapped) metal in the cuprate La1.8−xEu0.2SrxCuO4. We use three complementary experiments—nuclear quadrupole resonance, nonlinear conductivity and specific heat—to demonstrate that the order appears through a sharp phase transition and exists in a dome-shaped region of the phase diagram. Our results imply that the new phase is a state, which preserves translational symmetry: a charge nematic. We thus resolve the process of charge-stripe development in cuprates, show that this nematic phase is distinct from high-temperature pseudogap and establish a link with other strongly correlated electronic materials with prominent nematic order.
机译:电荷条带化顺序最近已被确立为铜酸盐高Tc超导体的重要方面。然而,由于竞争阶段之间复杂的相互作用和无序的影响,目前尚不清楚它是如何从母体高温状态中出现的。在这里,我们报告了在铜酸盐La1.8-xEu0.2SrxCuO4中,电荷带状有序与金属之间的非常规有序相的发现。我们使用三个互补实验-核四极共振,非线性电导率和比热-证明该顺序通过尖锐的相变出现并存在于相图的圆顶形区域中。我们的结果表明,新阶段是保持平移对称性的状态:电荷向列。因此,我们解决了铜酸盐中带状电荷发展的过程,表明该向列相不同于高温伪间隙,并与具有强烈向列相的其他高度相关的电子材料建立了联系。

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