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Spin waves and magnetic exchange interactions inCaFe 2 As 2
Jun Zhao
,
D. T. Adroja
, Dao Xin Yao
, R. Bewley
, Shiliang Li
, X. F. Wang
, G. Wu
, X. H. Chen
, Jiangping Hu
, Pengcheng Dai
University of Tennessee, Knoxville
STFC Rutherford Appleton Laboratory
Purdue University
CAS - Institute of Physics
University of Science and Technology of China
Oak Ridge National Laboratory
Research output
:
Contribution to journal
›
Letter
›
peer-review
376
Citations (Scopus)
Overview
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Keyphrases
Parent Compounds
100%
Antiferromagnetic Order
100%
Itinerant
100%
Spin Waves
100%
Magnetic Exchange Interaction
100%
Copper(II) Oxide
66%
Antiferromagnetism
66%
Local Moments
66%
Heisenberg Hamiltonian
66%
Iron Arsenide Superconductor
66%
Iron Arsenide
66%
High Temperature
33%
Three-dimensional (3D)
33%
Antiferromagnetic
33%
Copper-iron
33%
Magnetism
33%
Superconductor
33%
Inelastic Neutron Scattering
33%
Spin Excitations
33%
Antiferromagnetic Interaction
33%
Quasiparticle Excitations
33%
Fermi Surface
33%
Brillouin Zone
33%
Hole Doping
33%
Electron Doping
33%
Microscopic Origin
33%
Metallic Chromium
33%
High-Tc Superconductivity
33%
In-plane Anisotropy
33%
Contradictory Evidence
33%
Chemistry
Antiferromagnetic
100%
Exchange Interaction
100%
Magnon
100%
Superconductor
60%
Copper Oxide
40%
Antiferromagnetism
40%
Ground State
20%
Quasiparticle
20%
Superconductivity
20%
Inelastic Neutron Scattering
20%
Magnetism
20%
Brillouin Zone
20%
Anisotropy
20%
Physics
Magnon
100%
Copper Oxide
66%
Antiferromagnetism
66%
Quasiparticle
33%
Inelastic Neutron Scattering
33%
Fermi Surface
33%
Brillouin Zone
33%
Magnetism
33%
Anisotropy
33%
Wave Excitation
33%
Superconductivity
33%
Ground State
33%
Material Science
Superconducting Material
100%
Oxide Compound
66%
Chromium
33%
Magnetism
33%
Anisotropy
33%
Superconductivity
33%