English

Interplay between Zhang-Rice singlets and high-spin states in a model for doped NiO$_2$ planes

Strongly Correlated Electrons 2021-03-31 v1 Superconductivity

Abstract

Superconductivity found in doped NdNiO2_2 is puzzling as two local symmetries of doped NiO2_2 layers compete, with presumably far-reaching implications for the involved mechanism: a cuprate-like regime with Zhang-Rice singlets {\cblue is replaced by local triplet states at realistic values of charge-transfer energy, which would suggest a rather different superconductivity scenario from high-TcT_c cuprates}. We address this competition by investigating Ni4_4O8_8 clusters with periodic boundary conditions in the parameter range relevant for the superconducting nickelates. With increasing value of charge-transfer energy we observe upon hole doping the expected crossover from the cuprate regime dominated by Zhang-Rice singlets to the local triplet states. We find that smaller charge-transfer energy Δ\Delta is able to drive this change of the ground state character when realistic values for nickel-oxygen repulsion UdpU_{dp} are taken into account. For large values of the charge-transfer energy, oxygen orbitals are less important than in superconducting cuprates as their spectral weight is found only at rather high excitation energies. However, a second Ni(3d3d) orbital can easily become relevant, with either the xyxy or the 3z2r23z^2-r^2 orbitals contributing in addition to the x2y2x^2-y^2 orbital {\cblue to the formation of triplet states. In addition,} our result that UdpU_{dp} (acting between Ni and O) favors onsite triplets implies that correlation effects beyond purely onsite interactions should be taken into account when obtaining effective two-band models.

Keywords

Cite

@article{arxiv.2103.03737,
  title  = {Interplay between Zhang-Rice singlets and high-spin states in a model for doped NiO$_2$ planes},
  author = {Tharathep Plienbumrung and Maria Daghofer and Andrzej M. Oleś},
  journal= {arXiv preprint arXiv:2103.03737},
  year   = {2021}
}

Comments

12 pages, 11 figures, under review