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Theory of the metamagnetic transition in FeCl
2
R. P. Kenan
, R. E. Mills
, C. E. Campbell
Physics and Astronomy (Twin Cities)
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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2
'. Together they form a unique fingerprint.
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Keyphrases
Low-lying
100%
Iron(III) Chloride
100%
Metamagnetic Transition
100%
Temperature Effect
50%
Anisotropy
50%
Ising
50%
Doublet
50%
Singlet
50%
Exchange Term
50%
Fe2+ Ion
50%
Zero Field
50%
Zeeman
50%
Anisotropic Exchange Interaction
50%
Exchange Factor
50%
Green's Function Theory
50%
Crystal Field Calculations
50%
Molecular Field Theory
50%
Sublattice Magnetization
50%
Effective Spin
50%
Engineering
Anisotropic
100%
Sublattice
100%
Molecular Field
100%
Temperature Dependence
100%
Crystal Field
100%
Green's Functions
100%
Physics
Green's Functions
100%
Anisotropy
100%
Temperature Dependence
100%
Crystal Field Theory
100%
Material Science
Anisotropy
100%