Growth of Smooth, Low-Defect Germanium Layers on (111) Silicon via an Intermediate Islanding Process
スポンサーリンク
概要
- 論文の詳細を見る
- 2012-07-25
著者
-
Whall Terry
Department Of Physics University Of Warwick
-
Nguyen Van
Department Of Anesthesiology University Of Virginia Health System
-
Nguyen Van
Department Of Physics University Of Warwick
-
Parker Evan
Department Of Physics University Of Warwick
-
Myronov Maksym
Department Of Physics University Of Warwick
-
DOBBIE Andy
Department of Physics, University of Warwick
-
LEADLEY David
Department of Physics, University of Warwick
-
Dobbie Andy
Department Of Physics University Of Warwick
-
Leadley David
Department Of Physics University Of Warwick
関連論文
- Production of Transgenic Pigs Harboring the Human Erythropoietin (hEPO) Gene Using Somatic Cell Nuclear Transfer
- Macronutrient Intake and Nutritional Status of Primary School-Aged Girls in Rural and Urban Areas of South Vietnam
- Desmutagenicity of Soybean after Heating
- Aquatic insect faunas and communities of a mountain stream in Sapa Highland, northern Vietnam
- Optical Properties of Dry-Etched Si/Si_Ge_x Heterostructure Wires
- Blood Pressure, Serum Cholesterol Concentration and Their Related Factors in Urban and Rural Elderly of Ho Chi Minh City
- High Hole Mobility in 65 nm Strained Ge p-Channel Field Effect Transistors with HfO2 Gate Dielectric
- The Polyphenol Content and Antioxidant Activities of the Main Edible Vegetables in Northern Vietnam
- Effects of Maillard Reaction Products on the Oxidative Cleavage and Polymerization of Protein under Ascorbic Acid-Transition Metal System
- Growth of Smooth, Low-Defect Germanium Layers on (111) Silicon via an Intermediate Islanding Process
- Further support for the early administration of lipid emulsion in the treatment of ropivacaine-induced central nervous system toxicity
- Growth of Smooth, Low-Defect Germanium Layers on (111) Silicon via an Intermediate Islanding Process
- Photosensitive chaotic integrated circuit with light controllability
- Production of Transgenic Pigs Harboring the Human Erythropoietin (hEPO) Gene Using Somatic Cell Nuclear Transfer
- Multi-string AC-powered LED Driver with Current Regulation Reduction based on Simple Circuitry