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Absence of 3a0 charge density wave order in the infinite-layer nickelate NdNiO2

  • C. T. Parzyck,
  • N. K. Gupta,
  • Y. Wu,
  • V. Anil,
  • L. Bhatt,
  • M. Bouliane,
  • R. Gong,
  • B. Z. Gregory,
  • A. Luo,
  • R. Sutarto,
  • F. He,
  • Y.-D. Chuang,
  • T. Zhou,
  • G. Herranz,
  • L. F. Kourkoutis,
  • A. Singer,
  • D. G. Schlom,
  • D. G. Hawthorn,
  • K. M. Shen

摘要

A hallmark of many unconventional superconductors is the presence of many-body interactions that give rise to broken-symmetry states intertwined with superconductivity. Recent resonant soft X-ray scattering experiments report commensurate 3a0 charge density wave order in infinite-layer nickelates, which has important implications regarding the universal interplay between charge order and superconductivity in both cuprates and nickelates. Here we present X-ray scattering and spectroscopy measurements on a series of NdNiO2+x samples, which reveal that the signatures of charge density wave order are absent in fully reduced, single-phase NdNiO2. The 3a0 superlattice peak instead originates from a partially reduced impurity phase where excess apical oxygens form ordered rows with three-unit-cell periodicity. The absence of any observable charge density wave order in NdNiO2 highlights a crucial difference between the phase diagrams of cuprate and nickelate superconductors.