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Effect of low temperature annealing on the magnetic properties of Ga
1-x
Mn
x
As/GaAs superlattices
S. J. Chung
*
,
S. Lee
, I. W. Park
, X. Liu
, J. K. Furdyna
*
Corresponding author for this work
Department of Physics
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›
peer-review
1
Citation (Scopus)
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1-x
Mn
x
As/GaAs superlattices'. Together they form a unique fingerprint.
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Keyphrases
Gallium Arsenide
100%
Magnetic Properties
100%
Undoped
100%
Superlattices
100%
Low-temperature Annealing
100%
Coercive Field
40%
Annealing
40%
Temperature Effect
20%
Reduced Sensitivity
20%
Interdiffusion
20%
Remanent Magnetization
20%
Annealing Characteristics
20%
P-type Dopant
20%
Engineering
Low-Temperature
100%
Gallium Arsenide
100%
Superlattice
100%
Coercive Field
50%
Gaas Layer
50%
Dopants
25%
Temperature Dependence
25%
Interdiffusion
25%
Material Science
Annealing
100%
Gallium Arsenide
100%
Magnetic Property
100%
Superlattice
100%
Doping (Additives)
25%