Superconductivity and charge density waves (CDW) are competitive, yet coexisting orders in cuprate superconductors. To understand their microscopic interdependence, a probe capable of discerning their interaction on its natural length and time scales is necessary. We use ultrafast resonant soft x-ray scattering to track the transient evolution of CDW correlations in YBa2Cu3O6+x following the quench of superconductivity by an infrared laser pulse. We observe a non-thermal response of the CDW order characterized by a near doubling of the correlation length within ≈ 1 picosecond of the superconducting quench. Our results are consistent with a model in which the interaction between superconductivity and CDW manifests inhomogeneously through disruption of spatial coherence, with superconductivity playing the dominant role in stabilizing CDW topological defects, such as discommensurations.
@article{arxiv.2003.04224,
title = {Enhanced charge density wave coherence in a light-quenched, high-temperature superconductor},
author = {S. Wandel and F. Boschini and E. H. da Silva Neto and L. Shen and M. X. Na and S. Zohar and Y. Wang and S. B. Welch and M. H. Seaberg and J. D. Koralek and G. L. Dakovski and W. Hettel and M-F. Lin and S. P. Moeller and W. F. Schlotter and A. H. Reid and M. P. Minitti and T. Boyle and F. He and R. Sutarto and R. Liang and D. Bonn and W. Hardy and R. A. Kaindl and D. G. Hawthorn and J. -S. Lee and A. F. Kemper and A. Damascelli and C. Giannetti and J. J. Turner and G. Coslovich},
journal= {arXiv preprint arXiv:2003.04224},
year = {2022}
}
Comments
Accepted version. 34 pages, 11 figures, Main text and Supplementary Materials