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Iron pnictides and chalcogenides: a new paradigm for superconductivity
Rafael M. Fernandes
, Amalia I. Coldea
, Hong Ding
, Ian R. Fisher
, P. J. Hirschfeld
, Gabriel Kotliar
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Review article
›
peer-review
212
Scopus citations
Overview
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Keyphrases
Iron-based Superconductors
100%
Superconductivity
100%
Iron Pnictides
100%
Iron Chalcogenide
100%
Wide-field
50%
Quantum Materials
50%
Unconventional Superconductors
50%
Unconventional Superconductivity
50%
Experimental Tools
50%
Atomic Orbitals
50%
Metallic State
50%
Magnetic Perturbations
50%
Gap Structure
50%
Extremely Low Temperature
50%
Pairing Mechanism
50%
Iron-based Materials
50%
Quantum Criticality
50%
Correlated States
50%
Conventional Superconductors
50%
Electronic Nematicity
50%
Material Science
Superconductivity
100%
Chalcogenides
100%
Superconducting Material
66%
Iron-Based Superconductors
66%