论文标题

在过度库层超导体中,在伪随阶段以外的列表消失了

Vanishing nematic order beyond the pseudogap phase in overdoped cuprate superconductors

论文作者

Gupta, Naman K., McMahon, C., Sutarto, R., Shi, T., Gong, R., Wei, Haofei I., Shen, K. M., He, F., Ma, Q., Dragomir, M., Gaulin, B. D., Hawthorn, D. G.

论文摘要

在过去的十年中,已建立了许多相关电子系统(包括pnictide和cuprate超导体)的转化和旋转对称性阶段(密度波顺序和电子夜行性)。然而,在丘比特中,这些电子对称性阶段与神秘的伪阶段之间的关系尚不清楚。 Here, we employ resonant x-ray scattering in a cuprate high-temperature superconductor La$_{1.6-x}$Nd$_{0.4}$Sr$_{x}$CuO$_{4}$ (Nd-LSCO) to navigate the cuprate phase diagram, probing the relationship between electronic nematicity of the Cu 3$d$ orbitals, charge顺序和伪阶段作为掺杂的函数。我们发现,通过伪随pseudogap发作温度提高温度$ t^{*} $,或者通过pseudogap关键点$ p^{*} $提高了温度,这证明了超出伪阶段的电子词性降低的证据。这些结果建立了电子诺玛特性,伪群及其相关的量子关键性之间的明确联系。我们的发现预测,电子词性在理解铜酸盐相图中的作用可能比以前认可的更大,这可能在伪群的现象学中具有至关重要的作用。

During the last decade, translational and rotational symmetry-breaking phases -- density wave order and electronic nematicity -- have been established as generic and distinct features of many correlated electron systems, including pnictide and cuprate superconductors. However, in cuprates, the relationship between these electronic symmetry-breaking phases and the enigmatic pseudogap phase remains unclear. Here, we employ resonant x-ray scattering in a cuprate high-temperature superconductor La$_{1.6-x}$Nd$_{0.4}$Sr$_{x}$CuO$_{4}$ (Nd-LSCO) to navigate the cuprate phase diagram, probing the relationship between electronic nematicity of the Cu 3$d$ orbitals, charge order, and the pseudogap phase as a function of doping. We find evidence for a considerable decrease in electronic nematicity beyond the pseudogap phase, either by raising the temperature through the pseudogap onset temperature $T^{*}$ or increasing doping through the pseudogap critical point, $p^{*}$. These results establish a clear link between electronic nematicity, the pseudogap, and its associated quantum criticality in overdoped cuprates. Our findings anticipate that electronic nematicity may play a larger role in understanding the cuprate phase diagram than previously recognized, possibly having a crucial role in the phenomenology of the pseudogap phase.

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