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  3. Quantum Structures and Ultraviolet Light Emitting Devices Based on ZnO Thin Films Grown by Laser Molecular Beam Epitaxy
Quantum Structures and Ultraviolet Light Emitting Devices Based on ZnO Thin Films Grown by Laser Molecular Beam Epitaxy
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Quantum Structures and Ultraviolet Light Emitting Devices Based on ZnO Thin Films Grown by Laser Molecular Beam Epitaxy

利用条件: 著作権あり
人物
大友, 明
時間
2000年
所在
国立国会図書館デジタルコレクション

メタデータが似ているアイテム

Research on GaInp/AlInp strained quantum well lasers grown by gas source molecular beam epitaxy

Research on GaInp/AlInp strained quantum well lasers grown by gas source molecular beam epitaxy

Electronic properties of GaAs surfaces grown by molecular beam epitaxy

Electronic properties of GaAs surfaces grown by molecular beam epitaxy

Study of Ⅲ-Ⅵ compound semiconductors grown by molecular beam epitaxy

Study of Ⅲ-Ⅵ compound semiconductors grown by molecular beam epitaxy

Spectroscopic study of Si-based semiconductor heterostructures grown by molecular beam epitaxy

Spectroscopic study of Si-based semiconductor heterostructures grown by molecular beam epitaxy

Molecular design of organic thin films for chemical sensors and electroluminescence devices

Molecular design of organic thin films for chemical sensors and electroluminescence devices

A study on low threshold GaInAsP/InP surface emitting lasers grown by chemical beam epitaxy

A study on low threshold GaInAsP/InP surface emitting lasers grown by chemical beam epitaxy

High-density GaAs/(GaAs)[m](AlAs)[n] quantum wires grown on (775)B-oriented GaAs substrates by molecular beam epitaxy

High-density GaAs/(GaAs)[m](AlAs)[n] quantum wires grown on (775)B-oriented GaAs substrates by molecular beam epitaxy

Photoluminescence and electrical properties of impurity-doped ZnSe layers grown by molecular beam epitaxy

Photoluminescence and electrical properties of impurity-doped ZnSe layers grown by molecular beam epitaxy

Artificial construction of high-T[c] cuprates by laser molecular beam epitaxy and their two-dimensional superconductivity

Artificial construction of high-T[c] cuprates by laser molecular beam epitaxy and their two-dimensional superconductivity

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登録日: 2020-12-17

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