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From the Cover: Superconductivity in a unique type of copper oxide

机译:从封面开始:独特类型的氧化铜的超导性

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摘要

The mechanism of superconductivity in cuprates remains one of the big challenges of condensed matter physics. High-Tc cuprates crystallize into a layered perovskite structure featuring copper oxygen octahedral coordination. Due to the Jahn Teller effect in combination with the strong static Coulomb interaction, the octahedra in high-Tc cuprates are elongated along the c axis, leading to a 3dx2-y2 orbital at the top of the band structure wherein the doped holes reside. This scenario gives rise to 2D characteristics in high-Tc cuprates that favor d-wave pairing symmetry. Here, we report superconductivity in a cuprate Ba2CuO4-y, wherein the local octahedron is in a very exceptional compressed version. The Ba2CuO4-y compound was synthesized at high pressure at high temperatures and shows bulk superconductivity with critical temperature (Tc) above 70 K at ambient conditions. This superconducting transition temperature is more than 30 K higher than the Tc for the isostructural counterparts based on classical La2CuO4. X-ray absorption measurements indicate the heavily doped nature of the Ba2CuO4-y superconductor. In compressed octahedron, the 3d3z2-r2 orbital will be lifted above the 3dx2-y2 orbital, leading to significant 3D nature in addition to the conventional 3dx2-y2 orbital. This work sheds important light on advancing our comprehensive understanding of the superconducting mechanism of high Tc in cuprate materials.
机译:铜酸盐中的超导机制仍然是凝聚态物理的一大挑战。高Tc铜酸盐结晶成具有钙氧八面体配位结构的钙钛矿结构。由于Jahn Teller效应和强大的静态库仑相互作用,高Tc铜酸盐中的八面体沿c轴伸长,导致3dx 2 -y 2 掺杂空穴所在的带结构顶部的轨道。这种情况下,高Tc速率的2D特性引起了d波配对对称性的提高。在这里,我们报道了在Ba2CuO4-y铜酸盐中的超导性,其中局部八面体处于非常特殊的压缩形式。 Ba2CuO4-y化合物是在高温高压下合成的,在环境条件下的临界温度(Tc)高于70 K时,显示出体超导性。该超导转变温度比基于经典La2CuO4的同构对应物的Tc高30 K以上。 X射线吸收测量表明Ba2CuO4- y 超导体的重掺杂性质。在压缩八面体中,3 d 3 z 2 - r 2 轨道将被提升到3 dx 2 - y 2 轨道之上,从而导致除了常规的3D特性外3 dx 2 - y 2 轨道。这项工作为增进我们对铜酸盐材料中高 T c 超导机理的全面理解提供了重要的启示。

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