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Superconducting oxide multilayers and superlattices: Physics, chemistry, and nanoengineering
Ivan Bozovic
,
J. N. Eckstein
, G. F. Virshup
Research output
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Article
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peer-review
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Keyphrases
Oxides
100%
Trilayer
100%
Superlattices
100%
Nanoengineering
100%
Physics Chemistry
100%
Supercurrent
50%
Cuprates
50%
Heterostructure
50%
Atomic Layers
50%
Phase Locking
50%
Titanate
50%
Pinhole
50%
Josephson Junction
50%
One-unit-cell
50%
High-Tc
50%
Atomic Monolayer
50%
Complex Oxides
50%
Modulation Doping
50%
Y Doping
50%
Layer Engineering
50%
Long Range Proximity Effect
50%
Tunneling Transport
50%
Crystalline Order
50%
Abrupt Interface
50%
Nuclear Capability
50%
Material Science
Monolayers
100%
Oxide Compound
100%
Superlattice
100%
Titanate
50%
Cuprate
50%
Heterojunction
50%
Josephson Junction
50%
Physics
Physics
100%
Superlattice
100%
Cuprates
50%
Titanates
50%
Modulation Doping
50%
Josephson Junction
50%