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Antisite effect on hole-mediated ferromagnetism in (Ga,Mn)As
R. C. Myers
, B. L. Sheu
, A. W. Jackson
, A. C. Gossard
,
P. Schiffer
, N. Samarth
, D. D. Awschalom
Research output
:
Contribution to journal
›
Article
›
peer-review
52
Scopus citations
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Keyphrases
Antisite
100%
Hole-mediated Ferromagnetism
100%
Ni-Mn-Ga
100%
Curie Temperature
75%
Low Doping Concentration
50%
Structural Properties
25%
Stoichiometry
25%
Magnetic Properties
25%
Electronic Properties
25%
Flux Ratio
25%
Structural Electronics
25%
Molecular Beam Epitaxy
25%
Hole Density
25%
Doping Limit
25%
Antiferromagnetic Order
25%
Single Wafer
25%
Substrate Rotation
25%
Without Substrate
25%
Material Science
Ferromagnetism
100%
Curie Temperature
100%
Density
66%
Magnetic Property
33%
Electronic Property
33%
Molecular Beam Epitaxy
33%
Chemistry
Ferromagnetism
100%
Curie Temperature
100%
Structure
33%
Reaction Stoichiometry
33%
Magnetic Property
33%
Electronic Property
33%
Molecular Beam Epitaxy
33%
Physics
Ferromagnetism
100%
Curie Temperature
100%
Molecular Beam Epitaxy
33%
Magnetic Properties
33%
Stoichiometry
33%