Trends in electronic structures and s± -wave pairing for the rare-earth series in bilayer nickelate superconductor R3Ni2O7
Author:
Funder
U.S. Department of Energy
Basic Energy Sciences
Division of Materials Sciences and Engineering
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.108.165141/fulltext
Reference41 articles.
1. Signatures of superconductivity near 80 K in a nickelate under high pressure
2. Superconductivity in an infinite-layer nickelate
3. Similarities and Differences between LaNiO2 and CaCuO2 and Implications for Superconductivity
4. Superconductivity in infinite-layer nickelates
5. Similarities and differences between nickelate and cuprate films grown on a SrTiO3 substrate
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1. Quenched Pair Breaking by Interlayer Correlations as a Key to Superconductivity in La3Ni2O7;Physical Review Letters;2024-08-30
2. Electronic structure, self-doping, and superconducting instability in the alternating single-layer trilayer stacking nickelates La3Ni2O7;Physical Review B;2024-08-14
3. Interlayer pairing-induced partially gapped Fermi surface in trilayer La4Ni3O10 superconductors;Physical Review B;2024-08-09
4. Effect of Rare-Earth Element Substitution in Superconducting R3Ni2O7 under Pressure;Chinese Physics Letters;2024-08-01
5. Superconductivity in nickelate and cuprate superconductors with strong bilayer coupling;Physical Review B;2024-07-24
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