涡流
物理
空中骑兵
磁通量量子
凝聚态物理
磁通量
超导电性
奇点
量化(信号处理)
分馏
磁场
量子力学
量子
拓扑缺陷
量子涡旋
芯(光纤)
Ⅱ型超导体
量子霍尔效应
焊剂(冶金)
量子点
类型(生物学)
磁通钉扎
拓扑(电路)
拓扑量子计算机
磁化
准粒子
作者
Yu Zheng,Quanxin Hu,X H Yu,Haijiao Ji,Igor Timoshuk,Julien Garaud,HJ Xu,Yongwei Li,Ye Gao,Xingye Lu,Vadim Grinenko,EGOR BABAEV,Noah F. Q. Yuan,Rui Wu,Baiqing Lv,Chi Ming Yim,Hong Ding
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-05-21
卷期号:: eads0189-eads0189
标识
DOI:10.1126/science.ads0189
摘要
Magnetic fields can penetrate a superconductor in the form of quantum vortices, which consist of a core singularity with circulating currents. London’s quantization implies that there is one core singularity per quantum of magnetic flux in single-component superconductors. Here, we report signatures of quantum vortex core fractionalization on the potassium-terminated surface of a multiband superconductor KFe 2 As 2 . The observed splitting of single integer-flux vortices into several fractional vortices results in a disparity between the numbers of flux quanta and vortex cores. These fractional vortices often arrange in chains, which calculations show are characterized by a ℂP 2 skyrmionic topological invariant; this constitutes a different type of topological defect: the chiral skyrmion. The disparate natures of integer and fractional vortices comprising skyrmions lead to distinct spectroscopic signatures.
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