SEIFERT Werner | Solid State Physics, Lund University
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概要
関連著者
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SEIFERT Werner
Solid State Physics, Lund University
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Seifert Werner
Solid State Physics And Nanometer Structure Consortium Lund University
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Keller Stacia
Department Of Electrical And Computer Engineering University Of California
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DENBAARS Steven
Electrical and Computer Engineering Department, University of California
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Mishra U
Department Of Electrical And Computer Engineering University Of California
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Keller Stacia
Electrical And Computer Engineering Department University Of California
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Mishra Umesh
Materiais And Electrical And Computer Engineering University Of Callfornia
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Mishra U.
Materials Department University Of California
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Denbaars Steven
Jst-erato中村pj:ucsb
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MISHRA Umesh
Electrical and Computer Engineering Department, University of California
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Denbaars Steven
Electrical And Computer Engineering And Materials Departments University Of California
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Denbaars Steven
Materials Department University Of California
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Carlsson Niclas
Solid State Physics And Nanometer Structure Consortium Lund University:femtosecond Technology Resear
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Mishra Umesh
Electrical And Computer Engineering Department University Of California
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Lind Erik
Solid State Physics Lund University
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Seifert Werner
Solid State Physics Lund University
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Johansson J
Solid State Physics And Nanometer Structure Consortium Lund University
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JOHANSSON Jonas
Solid State Physics and Nanometer Structure Consortium, Lund University
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Wernersson Lars-erik
Solid State Physics Lund University
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PIETZONKA Ines
Solid State Physics, Lund University
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Pietzonka Ines
Solid State Physics Lund University
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Mishra Umesh
Electrical & Computer Engineering and Materials Departments, University of California Santa Barbara, CA 93106, U.S.A.
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Keller Stacia
Electrical & Computer Engineering and Materials Departments, University of California Santa Barbara, CA 93106, U.S.A.
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DenBaars Steven
Electrical & Computer Engineering and Materials Departments, University of California Santa Barbara, CA 93106, U.S.A.
著作論文
- Spiral Growth of InGaN Nanoscale Islands on GaN
- Manipulations of Densities and Sizes during Self-Assembling Quantum Dots in Metal-Organic Vapour Phase Epitaxy
- Optimization of Overgrown Ex-Situ Processed GaAs Interfaces for a Resonant Tunneling PBT