The Unconventional Copper Oxide Superconductor with Conventional Constitution

Author:

Li W. M.,Zhao J. F.,Cao L. P.,Hu Z.,Huang Q. Z.,Wang X. C.,Yu R. Z.,Long Y. W.,Wu H.,Lin H. J.,Chen C. T.,Gong Z. Z.,Guguchia Z.,Kim J. S.,Stewart G. R.,Uemura Y. J.,Uchida S.,Jin C. Q.

Abstract

AbstractA new Ba2CuO4-y superconductor with critical temperature (Tc) exceeding 70 K was discovered. The X-ray absorption measurement gives evidence that this cuprate resembles La2CuO4 but is doped with a fairly large amount of holes, while in contrast to the so far known hole-doped high-Tc cuprates, the new cuprate possesses a much shorter local apical oxygen distance as well as much expanded in-plane Cu–O bond, leading to unprecedented compressed local octahedron. In compressed local octahedron, the Cu3d3z2r2 orbital level will be lifted above the Cu3dx2-y2 orbital level with more three-dimensional features, implying that pairing symmetry may carry admixtures from more than one gap, suggesting that Ba2CuO4-y composed of alkaline earth copper oxides that are the essential elements to form cuprate superconductors may belong to a new branch of cuprate superconductors.

Funder

Ministry of Science and Technolog

Natural Science Foundation (NSF) of China

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics,Electronic, Optical and Magnetic Materials

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