Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session S49: Electronic Structure of Superconductors (photoemission, etc.)
11:15 AM–2:15 PM,
Thursday, March 5, 2020
Room: Mile High Ballroom 1B
Sponsoring
Unit:
DCMP
Chair: Anton Vorontsov, Montana State University, Bozeman
Abstract: S49.00006 : Electronic structure and superconductivity in unconventional cuprates Ba$_2$CuO$_{3+\delta}$*
Presenter:
Kun Jiang
(Boston College)
Authors:
Kun Jiang
(Boston College)
Congcong Le
(Kavli Institute of Theoretical Sciences, University of Chinese Academy of Sciences)
Fu-Chun Zhang
(Kavli Institute of Theoretical Sciences, University of Chinese Academy of Sciences)
Ziqiang Wang
(Boston College)
Jiangping Hu
(Institute of Physics, Chinese Academy of Sciences)
grown under high pressure. Neutron experiments find that the polycrystal exhibits a structure similar to La$_2$CuO$_4$, but with dramatically different lattice parameters due to the CuO$_6$ octahedron compression. The octahedron compression leads to an {\em inverted} Cu $3d$ $e_g$ complex with the $d_{x^2-y^2}$ orbital sitting below the $d_{3z^2-r^2}$ orbital and an electronic structure highly unusual compared to the conventional cuprates. We conjecture that the material realizes a new path of in-plane positional oxygen doping, where the doped oxygens create matrices of compressed Ba$_2$CuO$_4$ embedded in Ba$_2$CuO$_{3}$. Constructing a strongly correlated two-orbital model at hole doping $x=2\delta$ of the Cu $d^9$ state, we show that the multi-orbital exchange interactions lead to an antiphase $d$-wave superconducting state, i.e. a nodal $d_\pm$ pairing state. These findings suggest that the class of unconventional cuprates with liberated orbitals as doped two-band Mott insulators can be a direction for realizing high-T$_c$ superconductivity.
*The work is supported by the U.S. Department of Energy, Basic Energy Sciences Grant No. DE-FG02-99ER45747.
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