Kang Tae | Quantum-Functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Korea
スポンサーリンク
概要
- Kang Tae Wonの詳細を見る
- 同名の論文著者
- Quantum-Functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Koreaの論文著者
関連著者
-
Kang Tae
Quantum Functional Semiconductor Research Center Dongguk University
-
Kang Tae
Quantum-Functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Korea
-
KIM Doo
Quantum-functional Semiconductor Research Center, Dongguk University
-
Min Cheonki
Quantum-functional Semiconductor Research Center Dongguk University
-
Kim Hwa-mok
Quantum-functional Semiconductor Research Center Dongguk University
-
Yuldashev Sh.
Quantum-functional Semiconductor Research Center Dongguk University
-
Kim Tae
Advanced Semiconductor Research Center Division Of Electrical And Computer Engineering Hanyang Unive
-
Lee Sejoon
Quantum-functional Semiconductor Research Center Dongguk University
-
Yuldashev Shavkat
Quantum Functional Semiconductor Research Center Dongguk University
-
Kim Deuk
Quantum Functional Semiconductor Research Center Dongguk University
-
Kim Hwa-Mok
Quantum-functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Korea
-
Lee Sejoon
Quantum-functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Korea
-
Yalishev Vadim
Department of Physics, Konkuk University, 1 Hwayang-dong, Kwangjin-gu, Seoul 143-701, Korea
-
Nusretov Rafael
Heat Physics Department, Uzbekistan Academy of Sciences, 28 Katartal, Tashkent 700135, Uzbekistan
-
Khvan Irina
Heat Physics Department, Uzbekistan Academy of Sciences, 28 Katartal, Tashkent 700135, Uzbekistan
-
Kim Deuk
Quantum-functional Semiconductor Research Center, Dongguk University, 3-26 Pil-dong, Chung-gu, Seoul 100-715, Korea
著作論文
- Formation and Characterization of (Zn1-xMnx)O Diluted Magnetic Semiconductors Grown on (0001) Al2O3 Substrates
- White Light Emission from ZnO/Zn0.9Mg0.1O Heterostructures Grown on Si Substrates