Angle-resolved photoemission spectroscopy study on iron-based superconductors
arXiv:1307.5754 · doi:10.1088/1674-1056/22/8/087407
Abstract
Angle-resolved photoemission spectroscopy (ARPES) has played an important role in determining the band structure and the superconducting gap structure of iron-based superconductors. Here from the ARPES perspective, we briefly review the main results from our group in the recent years on the iron-based superconductors and their parent compounds, and depict our current understanding on the antiferromagnetism and superconductivity in these materials.
13 pages, 17 figures, published on the "TOPICAL REVIEW: Iron-based high temperature superconductors" in Chinese Physics B Vol. 22, No. 8 (2013) 087407
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Cited by in corpus (12)
- Angle-resolved photoemission spectroscopy and its application to topological materials
- Iron based high transition temperature superconductors
- Role of the orbital degree of freedom in iron-based superconductors
- Angle-resolved photoemission spectroscopy
- Superconducting Properties of the -wave state: Fe-based superconductors
- High Resolution Angle Resolved Photoemission with Tabletop 11eV Laser
- Localization and Orbital Selectivity in Iron-Based Superconductors with Cu Substitution
- Critical current anisotropy in Nd-1111 single crystals and the infuence of neutron irradiation
- Observation of a Hidden Hole-Like Band Approaching the Fermi Level in K-Doped Iron Selenide Superconductor
- Genuine Electronic Structure and Superconducting Gap Structure in (BaK)FeAs Superconductor
- Observation of Electride-like States Coexisting with Correlated Electrons in NdNiO
- Revealing the intrinsic superconducting gap anisotropy in surface-neutralized BaFe(AsP)