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Evolution on magnetic states in frustrated diamond lattice antiferromagnetic Co(AI
1-x
Co
x
)
2
O
4
spinels
O. Zaharko, A. Cervellino, V. Tsurkan, N.B. Christensen, A. Loídl
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16
Citations (Scopus)
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Dive into the research topics of 'Evolution on magnetic states in frustrated diamond lattice antiferromagnetic Co(AI
1-x
Co
x
)
2
O
4
spinels'. Together they form a unique fingerprint.
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Engineering & Materials Science
Exchange coupling
94%
Magnetic anisotropy
82%
Diamonds
76%
Neutron powder diffraction
57%
Liquids
51%
Ground state
38%
Substitution reactions
25%
Temperature
20%
Chemical analysis
16%
Chemical Compounds
Magnetic Anisotropy
100%
Antiferromagnetic
74%
Diamond
73%
Long-Range Order
48%
Monte Carlo Method
40%
Neutron Diffraction
40%
Ground State
30%
Substitution Reaction
24%
Physics & Astronomy
spinel
75%
diamonds
61%
liquids
40%
anisotropy
32%
frustration
28%
critical point
23%
substitutes
20%
perturbation
17%
neutrons
17%
ground state
17%
diffraction
13%
interactions
10%
simulation
9%
temperature
7%