MARANGONI FLOW AND THERMOPHYSICAL PROPERTIES OF MOLTEN SEMICONDUCTORS(Abstract from International Seminar on Manufacturing of Advanced Materials)
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概要
著者
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NAKAMURA Shin
Fundamental Research Laboratories, NEC Corporation
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HIBIYA Taketoshi
Fundamental Research Laboratories, NEC Corporation
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Kakimoto Koichi
Present Address : Institute Of Advanced Material Study Kyushu University
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Hibiya T
Fundamental Research Laboratories Nec Corporation
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KAKIMOTO Koichi
Fundamental Research Laboratories, NEC Corporation
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Hibiya Taketoshi
Fundamental Research Laboratories Nec Corporation
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Nakamura Shin
Fundamental Research Laboratories Nec Corporation
関連論文
- Observation of Periodic Marangoni Convection in a Molten Silicon Bridge on board the TR-IA-6 Rocket (TR-IA6号機特集(1))
- The effect of oxygen on the Marangoni flow of molten silicon
- Measurement of Temperature Fluctuations in Marangoni Convection in a Half-zone Silicon Melt on Board the TR-IA-4 Rocket (特集 TR-IA4号機)
- Effect of Oxygen Partial Pressure on the Surface Tension of Molten Silicon and Its Temperature Coefficient
- Control of Oxygen-Atom Transport in Silicon Melt during Crystal Growth by Electromagnetic Force
- Three-Dimensional Simulation of Silicon Melt Flow in Electromagnetic Czochralski Crystal Growth
- Ba_3Y_2Cu_2PtO_: Newly Obtained Phase During Single Crystal Growth of Ba_2YCu_3O_ from Platinum Crucide
- An Analysis of Natural Convection with Radiation from the Free Surface of the Fluid in a Vertical Cylinder
- Optical Measurement of Resonant Oscillation and Marangoni Convection-Induced Oscillation in a Molten Silicon Surface
- Silicon Crystal Growth by the Electromagnetic Czochralski (EMCZ) Method
- Modification of Heat and Mass Transfers and Their Effect on the Crystal-Melt Interface Shape of Si Single Crystal during Czochralski Crystal Growth
- Change in Velocity in Silicon Melt of the Czochralski (CZ) Process in a Vertical Magnetic Field
- MARANGONI FLOW AND THERMOPHYSICAL PROPERTIES OF MOLTEN SEMICONDUCTORS(Abstract from International Seminar on Manufacturing of Advanced Materials)
- Growth and Characterization of Liquid-Phase Epitaxial Bi-Substituted Iron Garnet Films for Magneto-Optic Application