| Literature DB >> 32586955 |
Jiemin Li1,2, Abhishek Nag1, Jonathan Pelliciari3,4, Hannah Robarts1,5, Andrew Walters1, Mirian Garcia-Fernandez1, Hiroshi Eisaki6, Dongjoon Song6, Hong Ding2, Steven Johnston7, Riccardo Comin3, Ke-Jin Zhou8.
Abstract
Charge-density waves (CDWs) are ubiquitous in underdoped cuprate superconductors. As a modulation of the valence electron density, CDWs in hole-doped cuprates possess both Cu-3d and O-2p orbital character owing to the strong hybridization of these orbitals near the Fermi level. Here, we investigate underdoped Bi2Sr1.4La0.6CuO6+δ using resonant inelastic X-ray scattering (RIXS) and find that a short-range CDW exists at both Cu and O sublattices in the copper-oxide (CuO2) planes with a comparable periodicity and correlation length. Furthermore, we uncover bond-stretching and bond-buckling phonon anomalies concomitant to the CDWs. Comparing to slightly overdoped Bi2Sr1.8La0.2CuO6+δ, where neither CDWs nor phonon anomalies appear, we highlight that a sharp intensity anomaly is induced in the proximity of the CDW wavevector (QCDW) for the bond-buckling phonon, in concert with the diffused intensity enhancement of the bond-stretching phonon at wavevectors much greater than QCDW Our results provide a comprehensive picture of the quasistatic CDWs, their dispersive excitations, and associated electron-phonon anomalies, which are key for understanding the competing electronic instabilities in cuprates.Entities:
Keywords: charge-density waves; high-temperature superconducting cuprates; phonon anomaly; resonant inelastic X-ray scattering
Year: 2020 PMID: 32586955 DOI: 10.1073/pnas.2001755117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205