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Neutron Spin Resonance near a Lifshitz Transition in Overdoped Ba_(0.4)K_(0.6)Fe_(2)As_(2)
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作者 Yang Li Dingsong Wu +11 位作者 Yingjie Shu Bo Liu Uwe Stuhr Guochu Deng Anton PJStamp Lin Zhao Xingjiang Zhou Shiliang Li Amit Pokhriyal Haranath Ghosh Wenshan Hong Huiqian Luo 《Chinese Physics Letters》 2025年第6期255-260,共6页
Elucidating the relationship between spin excitations and fermiology is essential for clarifying the pairing mechanism in iron-based superconductors(FeSCs).Here,we report inelastic neutron scattering results on the ho... Elucidating the relationship between spin excitations and fermiology is essential for clarifying the pairing mechanism in iron-based superconductors(FeSCs).Here,we report inelastic neutron scattering results on the hole overdoped Ba_(0.4)K_(0.6)Fe_(2)As_(2) near a Lifshitz transition,where the electron pocket at M point is nearly replaced by four hole pockets.In the normal state,the spin excitations is observed at incommensurate wave vectors with a chimney-like dispersion.By cooling down to the superconducting state,a neutron spin resonance mode emerges with a peak energy of Er=14-15 meV,weakly modulated along the L-direction.The incommensurability notably increases at low energies,giving rise to downward dispersions of the resonance mode.This behavior contrasts sharply with the upward dispersions of resonance observed in optimally doped Ba_(0.67)K_(0.33)Fe_(2)As_(2) contributed by the hole to electron scattering,but resembles those in KFe_(2)As_(2) and KCa_(2)Fe_(4)As_(4)F_(2) where the fermiology is dominated by hole pockets.These results highlight the critical role of electronic structure modifications near the Fermi level,especially in governing interband scattering under imperfect nesting conditions,which fundamentally shape the spin dynamics of FeSCs. 展开更多
关键词 elucidating relationship spin excitations fermiology pairing mechanism inelastic neutron scattering lifshitz transitionwhere cooling down Lifshitz transition hole overdoped neutron spin resonance
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