
Crystal Growth Technology Semiconductors and Dielectrics
by Scheel, Hans J.; Capper, Peter; Rudolph, PeterBuy New
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Summary
Author Biography
Peter Rudolph is currently the coordinator of the technology department of the Leibniz-Institute for Crystal Growth in Berlin. His present research field is the growth of semiconductor crystals (GaAs, Ge, Si) in magnetic fields. He obtained the PhD in Solid State Physics at the Technical University of Lvov in 1972, and in 1985 the Professor position at the Humboldt University in Berlin. From 1993-94 he was Guest Professor at the Tohoku University in Sendai. He is associate editor of J. Crystal Growth, president of the German Society of Crystal Growth and member of the IOCG executive committee. He is the author of one monograph, more than 200 papers and book chapters, 7 books editions and 33 patent descriptions. He acted as co-chair and advisor of several international conferences and schools. He received innovation prizes in 2001 and 2008.
Table of Contents
General Aspects of Crystal Growth Technology | |
Thermodynamic modeling of crystal growth processes | |
Prediction of s-l interface shapes and oxygen concentration distributions for 300 mm silicon crystals in a magnetic field | |
Modeling of vapor-phase growth of SiC and AlN bulk crystals | |
Advanced technologies of crystal growth from melt using vibrational influence | |
Convection during bulk crystal growth: The good, the bad, and the ugly | |
Compound Semiconductors | |
Defect characterization and control in VCz GaAs crystals grown without B2O3 encapsulant | |
The growth of semiconductor crystals (Ge, GaAs) by the heater-magnet technology | |
Sublimation growth of bulk AlN crystals | |
Behaviour of dislocations during Liquid Phase Epitaxy of GaN and CVD epitaxy of SiC | |
Low temperature growth of ternary III-V semiconductor crystals from quaternary melts | |
CdHgTe growth technology using ACRT and LPE | |
Influence of a Pt cold finger in the thermal environments during the growth of CdZnTe by the vertical Bridgman method | |
Halides and Oxides | |
Growth, computer modeling, and optimization of sapphire, garnet, and oxide crystals | |
Advanced material development for inertial fusion energy | |
Ceramic lasers and ceramic-crystal lasers | |
LPE of magnetooptical garnet films: preparation, characterization, applications | |
Growth technology and laser properties of Yb-doped sesquioxides | |
Continuous growth of large alkali halides: physics and technology | |
Trends in scintillation crystals | |
Crystal Growth For Sustaining Energy | |
Silicon crystal growth for photovoltaics | |
Low cost semiconductor and solar silicon | |
Crystal Machining | |
New developments in multi-wire sawing | |
Crystal machining using atmospheric pressure plasma | |
Table of Contents provided by Publisher. All Rights Reserved. |
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