paper

Intrinsic electronic superconducting phases at 60 K and 90 K in double-layer YBaCuO

arXiv:cond-mat/0611348 · doi:10.1103/PhysRevB.75.012508

Abstract

We study superconducting transition temperature () of oxygen-doped double-layer high-temperature superconductors YBaCuO (0 1) as a function of the oxygen dopant concentration () and planar hole-doping concentration (). We find that , while clearly influenced by the development of the chain ordering as seen in the plot, lies on a universal curve originating at the critical hole concentration () = 1/16 in the plot. Our analysis suggests that the universal behavior of () can be understood in terms of the competition and collaboration of chemical-phases and electronic-phases that exist in the system. We conclude that the global superconductivity behavior of YBaCuO as a function of doping is electronically driven and dictated by pristine electronic phases at magic doping numbers that follow the hierarchical order based on , such as 2 , 3 and 4 . We find that there are at least two intrinsic electronic superconducting phases of = 60 K at 2 = 1/8 and = 90 K at 3 = 3/16.

4 pages, 2 figures

Intrinsic electronic superconducting phases at 60 K and 90 K in double-layer YBa$_2$Cu$_3$O$_{6+δ}$ · wovepaper