Resonant X-ray Scattering Study of Charge Density Wave Correlations in YBa$_2$Cu$_3$O$_{6+x}$
S. Blanco-Canosa, A. Frano, E. Schierle, J. Porras, T. Loew, M., Minola, M. Bluschke, E. Weschke, B. Keimer, and M. Le Tacon

TL;DR
This study uses resonant x-ray scattering to explore charge density wave correlations in YBa2Cu3O6+x, revealing doping-dependent behaviors, competition with magnetic order, and implications for high-temperature superconductivity.
Contribution
It provides detailed doping-dependent insights into CDW correlations in YBCO, highlighting their relationship with superconductivity and magnetic order, and compares these findings with other cuprate families.
Findings
CDW correlations exist for 0.45<x<0.93
CDW wave vectors decrease linearly with doping
Maximum CDW intensity and correlation length at p~0.12
Abstract
We report the results a comprehensive study of charge density wave (CDW) correlations in untwinned YBCO6+x single crystals with 0.4<x<0.99 using Cu-L3 edge resonant x-ray scattering (RXS). Evidence of CDW formation is found for 0.45<x<0.93, but not for samples with x<0.44 that exhibit incommensurate spin-density-wave order, and in slightly overdoped samples with x=0.99. This suggests the presence of two proximate zero-temperature CDW critical points at doping pc1~0.08 and pc2~0.18. The CDW reflections are observed at incommensurate in-plane wave vectors (d_a, 0) and (0, d_b). Both decrease linearly with increasing doping, in agreement with recent reports on Bi-based high-Tc superconductors, but in sharp contrast to the behavior of the 214 family. The CDW intensity and correlation length exhibit maxima at p~0.12, coincident with a plateau in the superconducting transition temperature Tc.…
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