论文标题
局部RU己酰胺在磷化非丹族的超导性中的作用
Role of Local Ru Hexamers in Superconductivity of Ruthenium Phosphide
论文作者
论文摘要
二进制二义素pnictides中的超导性发生在与Fermi表面不稳定性相关的伪gap阶段之前,在抑制神秘的非磁基态,其临界温度t $ _ {c} $在pseudogap量子量子上最大化。通过类似于等电铁的对应物,抗铁磁波动成为“通常的嫌疑犯”,作为超导配对的推定介体。在这里,我们报告了RUP中的高温局部对称性破坏,这是这些新型超导体的最大-TC分支的母体,由纳米结构敏感粉末和单晶X射线总散射实验揭示。大型本地Ru $ _ {6} $ hexamer畸变与RUP的两阶段电子过渡上方相关的轨道荷利三聚化形式相关。六聚体排序可以实现非磁基状态和假定的复杂寡聚化,但假成pseudogap波动与超导性的相关性却是一个独特的前景。作为一种过渡金属系统,部分D-manifold填充与高晶体对称性相结合促进了电子不稳定性,这代表了局部电子前体的另一个例子,这些局部电子前体是量子材料的宏观集体行为。
Superconductivity in binary ruthenium pnictides occurs proximal to and upon suppression of a mysterious non-magnetic ground state, preceded by a pseudogap phase associated with Fermi surface instability, and its critical temperature, T$_{c}$, is maximized around the pseudogap quantum critical point. By analogy with isoelectronic iron based counterparts, antiferromagnetic fluctuations became "usual suspects" as putative mediators of superconducting pairing. Here we report on a high temperature local symmetry breaking in RuP, the parent of the maximum-Tc branch of these novel superconductors, revealed by combined nanostructure-sensitive powder and single crystal X-ray total scattering experiments. Large local Ru$_{6}$ hexamer distortions associated with orbital-charge trimerization form above the two-stage electronic transition in RuP. While hexamer ordering enables the nonmagnetic ground state and presumed complex oligomerization, the relevance of pseudogap fluctuations for superconductivity emerges as a distinct prospect. As a transition metal system in which partial d-manifold filling combined with high crystal symmetry promotes electronic instabilities, this represents a further example of local electronic precursors underpinning the macroscopic collective behavior of quantum materials.