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Titlebook: Defects and Impurities in Silicon Materials; An Introduction to A Yutaka Yoshida,Guido Langouche Book 2015 Springer Japan 2015 Atomistic In

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Numerical Analysis of Impurities and Dislocations During Silicon Crystal Growth for Solar Cells,n. The simulation helped to reduce carbon and oxygen impurities by designing a simple crucible cover and to decrease the dislocation multiplication and residual stress by using a slow cooling process. Further quality improvements can be achieved using these solvers to optimize furnace structure and operating conditions at a low cost.
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Book 2015n materials, which havebecome more directly accessible over the past 20 years. Such progress has beenmade possible by newly developed experimental methods, first principle theories,and computer simulation techniques. .The book is aimed at young researchers, scientists, and technicians in related ind
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Diabetes in Children and Adolescentsority carrier lifetime and relate these measurements to the defect concentrations and properties are considered. Optical measurements to study defects are presented including optical absorption, Raman techniques and photoluminescence. The status and limitations of such techniques for qualification of silicon material are discussed.
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Electrical and Optical Defect Evaluation Techniques for Electronic and Solar Grade Silicon,ority carrier lifetime and relate these measurements to the defect concentrations and properties are considered. Optical measurements to study defects are presented including optical absorption, Raman techniques and photoluminescence. The status and limitations of such techniques for qualification of silicon material are discussed.
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