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Magnetic order of the Cu planes and chains in RBa2Cu3O6+x
W. H. Li
, J. W. Lynn, Z. Fisk
Department of Physics
Research output
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Contribution to journal
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Article
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peer-review
35
Scopus citations
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Keyphrases
Magnetic Ordering
100%
Plane Layer
100%
T Phase
40%
Antiferromagnetic
40%
Single Crystal
40%
Ordered Phase
40%
T-structure
40%
Temperature Decrease
20%
Applied Magnetic Field
20%
Tetragonal
20%
Temperature Effect
20%
Two Dimensional
20%
Low Temperature
20%
Transition Temperature
20%
Unpolarized
20%
Quantum Fluctuations
20%
Oxygen Concentration
20%
Over 40
20%
Neutron Diffraction Method
20%
First-order
20%
Non-collinear
20%
Magnetic Anisotropy
20%
Magnetic Structure
20%
Crystal Orientation
20%
Paramagnetic State
20%
Qualitative Behavior
20%
Polycrystalline Sample
20%
Oxygen Deficiency
20%
Two-sample
20%
Competing Interactions
20%
Magnetic Form Factor
20%
Spin Structure
20%
Integrated Intensity
20%
T Site
20%
Cu(II) Ions
20%
Magnetic Units
20%
Chemical Unit
20%
Exchange Energy
20%
Oxygen Ions
20%
Chemistry
Magnetic Phenomena
100%
Antiferromagnetic
100%
Single Crystalline Solid
100%
Phase Composition
50%
Magnetic Anisotropy
50%
Magnetic Field
50%
Magnetic Structure
50%
Neutron Diffraction
50%
Quantum Fluctuation
50%
Magnetic Form Factor
50%
Oxygen Ion
50%
Physics
Single Crystal
100%
Magnetic Field
50%
Quantum Fluctuation
50%
Polycrystalline
50%
Energy Transfer
50%
Temperature Dependence
50%
Magnetic Anisotropy
50%
Neutron Diffraction
50%
Oxygen Ion
50%
Form Factor
50%
Material Science
Single Crystal
100%
Anisotropy
50%
Diffraction Measurement
50%
Neutron Diffraction
50%
Copper Ion
50%
Magnetic Structure
50%
Engineering
Layer Plane
100%
Temperature Dependence
20%
Two Dimensional
20%
Applied Magnetic Field
20%
Low-Temperature
20%
Oxygen Concentration
20%
Polycrystalline
20%
Oxygen Ion
20%
Integrated Intensity
20%
Exchange Energy
20%
Structure Spin
20%