凝聚态物理
超导电性
鞍点
配对
砷化物
马鞍
兴奋剂
费米面
扫描隧道显微镜
电荷密度波
相图
高温超导
砷化镓
量子隧道
电荷(物理)
材料科学
物理
相(物质)
量子力学
几何学
数学优化
数学
作者
Quanxin Hu,Yu Zheng,Hanxiang Xu,Junze Deng,Chenhao Liang,Fazhi Yang,Zhijun Wang,V. Grinenko,Baiqing Lv,Hong Ding,Chi Ming Yim
标识
DOI:10.1038/s41467-024-55368-7
摘要
Abstract Unconventional superconductivity is known for its intertwining with other correlated states, making exploration of the intertwined orders important for understanding its pairing mechanism. In particular, spin and nematic orders are widely observed in iron-based superconductors; however, the presence of charge order is uncommon. Using scanning tunnelling microscopy, and through expanding the phase diagram of iron-arsenide superconductor Ba 1− x K x Fe 2 As 2 to the hole-doping regime beyond KFe 2 As 2 by surface doping, we demonstrate the formation of a charge density wave (CDW) on the arsenide surface of heavily hole-doped Ba 1− x K x Fe 2 As 2 . Its emergence suppresses superconductivity completely, indicating their direct competition. Notably, the CDW emerges when the saddle points approach the Fermi level, where its wavevector matches with those linking the saddle points, suggesting saddle-point nesting as its most probable formation mechanism. Our findings offer insights into superconductivity and intertwined orders, and a platform for studying them in iron-based superconductors close to the half-filled configuration.
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