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Pressure effects on magnetism in Ca2Mn2 O5 -type ferrites and manganites
Yongjin Shin,
James M. Rondinelli
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Corresponding author for this work
Materials Science and Engineering
Research output
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Article
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peer-review
4
Scopus citations
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Keyphrases
Magnetism
100%
Pressure Effect
100%
Antiferromagnetic
100%
Manganites
100%
Ferrite
100%
Crystal Field Splitting
100%
Polyhedral
66%
Phase Stability
66%
Magnetic Phases
66%
Hydrostatic Pressure
66%
Electronic Configuration
66%
High Pressure
33%
Spin Crossover
33%
Density Functional Calculations
33%
Perovskite
33%
Anions
33%
Perovskite Structure
33%
Magnetic Ordering
33%
Transition Metal Cations
33%
Applied Pressure
33%
Oxygen Vacancy
33%
Square Pyramidal
33%
Ferromagnetic Spin
33%
Antiferromagnetic Order
33%
Hubbard U Correction
33%
Correlation Strength
33%
Magnetic Transition
33%
D-orbital
33%
E-type
33%
Oxygen-deficient Perovskites
33%
Spin Ordering
33%
Orbital Filling
33%
G-type
33%
Magnetic Stability
33%
Physics
Pressure Effect
100%
Crystal Field Theory
100%
Perovskites
66%
Fluid Statics
66%
Metal Ion
33%
Transition Metal
33%
Oxygen Vacancy
33%
Density Functional Theory
33%
Ground State
33%
Magnetic Phenomena
33%
Chemistry
Antiferromagnetic
100%
Crystal Field Splitting
75%
Phase Stability
50%
electronics
50%
Ground State
25%
Oxygen Vacancy
25%
Magnetic Phenomena
25%
Magnetic Transition
25%
Transition Metal
25%
stability
25%
Density Functional Theory
25%
Metal Ion
25%
Material Science
Magnetism
100%
Fluid Statics
100%
Transition Metal
50%
Oxygen Vacancy
50%
Density
50%