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Molecular beam epitaxial growth and properties of CoFe
2
O
4
on MgO(0 0 1)
S. A. Chambers
, R. F.C. Farrow
, S. Maat
, M. F. Toney
, L. Folks
, J. G. Catalano
, T. P. Trainor
, G. E. Brown
Department of Earth & Planetary Sciences
Arts & Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
135
Scopus citations
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Dive into the research topics of 'Molecular beam epitaxial growth and properties of CoFe
2
O
4
on MgO(0 0 1)'. Together they form a unique fingerprint.
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Engineering
Surface Morphology
100%
Dependent Strain
100%
Growth Method
100%
Sublattice
100%
Magnetic Domain
100%
Structure Surface
100%
Film Surface
100%
Saturation Magnetization
100%
Pulsed Laser
100%
Magnetic Energy
100%
Material Form
100%
Keyphrases
Molecular Beam Epitaxy
100%
CoFe2O4
100%
Plasma-assisted Molecular Beam Epitaxy
100%
Oxygen Plasma
100%
Co-ferrite
75%
Single Crystal
25%
Compositional Structure
25%
Strain-dependent
25%
Surface Morphology
25%
Morphological Properties
25%
Growth Method
25%
Unit Volume
25%
Magnetic Properties
25%
Magnetic Energy
25%
Magnetic Domains
25%
Film Thickness
25%
Film Surface
25%
Epitaxial
25%
Pulsed Laser Deposition
25%
As-grown
25%
Formal Oxidation State
25%
Structured Surface
25%
Mean Roughness
25%
Saturation Magnetization
25%
Octahedral Sites
25%
Cation Sublattices
25%
Material Forming
25%
Magnetic Anisotropy
25%
Inverse Spinel
25%
Material Science
Magnesium Oxide
100%
Epitaxy
100%
Molecular Beam Epitaxy
100%
Film
50%
Structure (Composition)
25%
Anisotropy
25%
Surface Morphology
25%
Magnetic Property
25%
Film Thickness
25%
Pulsed Laser Deposition
25%
Surface (Surface Science)
25%
Single Crystal
25%