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◆ Physical Review Letters2025-11-12· Condensed matter physics

Superconductivity Governed by Janus-Faced Fermiology in Strained Bilayer Nickelates

Siheon Ryee, Niklas Witt, Giorgio Sangiovanni, Tim O. Wehling

原始摘要(英文原文)· Original abstract
High-temperature superconductivity in pressurized and strained bilayer nickelates (La,Pr)_{3}Ni_{2}O_{7} has emerged as a new frontier. One of the key unresolved issues concerns the fermiology that underlies superconductivity. On both theoretical and experimental sides, no general consensus has been reached, and conflicting results exist regarding whether the relevant Fermi surface involves a γ pocket-a hole pocket with d_{z^{2}}-orbital character centered at the Brillouin zone corner. Here, we address this issue by unveiling a Janus-faced role of the γ pocket in spin-fluctuation-mediated superconductivity. We show that this pocket simultaneously induces dominant pair-breaking and pair-forming channels for the leading s_{±}-wave pairing. Consequently, an optimal superconducting transition temperature T_{c} is achieved when the γ pocket surfaces at the Fermi level, placing the system near a Lifshitz transition. This suggests that superconductivity can emerge, provided the maximum energy level of the γ pocket lies sufficiently close to the Fermi level, either from below or above. Our finding not only reconciles two opposing viewpoints on the fermiology, but also naturally explains recent experiments on (La,Pr)_{3}Ni_{2}O_{7} thin films, including the superconductivity under compressive strain, two conflicting measurements on the Fermi surface, and the dome shape of T_{c} as a function of hole doping.
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