s±-wave pairing in La3Ni2O7 thin films is robust across different crystal structures, and the halved transition temperature is reproduced only when the experimentally determined structure with small interlayer hopping is used.
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Constrained-path QMC simulations of a bilayer Hubbard model map a crossover from d-wave to s±-wave pairing driven by Hund's coupling and crystal field splitting in La3Ni2O7.
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Theoretical study on ambient pressure superconductivity in La$_3$Ni$_2$O$_7$ thin films : structural analysis, model construction, and robustness of $s\pm$-wave pairing
s±-wave pairing in La3Ni2O7 thin films is robust across different crystal structures, and the halved transition temperature is reproduced only when the experimentally determined structure with small interlayer hopping is used.
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Pairing Symmetry Crossover from $d$-wave to $s_{\pm}$-wave in a Bilayer Nickelate Driven by Hund's Coupling and Crystal Field Splitting
Constrained-path QMC simulations of a bilayer Hubbard model map a crossover from d-wave to s±-wave pairing driven by Hund's coupling and crystal field splitting in La3Ni2O7.