In recent years, my country\'s solar energy industry has developed rapidly. The industrial scale of traditional crystalline silicon solar cells is the world\'s leading. The research and development and industrialization of various new solar cells have continued to deepen. Teachers, students and in-service engineering and technical personnel are enthusiastic about learning solar cell theory and technology. Against this background, Nelson\'s \"Solar Cell Physics\" attempts to discuss solar cells at the theoretical level based on the foundation of semiconductor physics. This book covers the types of solar cells, the basic characteristics of solar cells, the quantitative description of solar radiation, the theoretical model of semiconductors, the characteristics of various semiconductor junctions, the theoretical analysis of pn junctions, the principle performance of 5 common solar cells, optical optimization methods and high conversion efficiency technology. Table of Parameter Symbols Chapter 1 Characteristics of Solar Cells Chapter 2 From Photons to Current Chapter 3 Carriers Chapter 4 Generation and Recombination of Carriers Chapter 5 Semiconductor Junctions Chapter 6 pn Junctions Chapter 7 Crystalline Silicon Solar Cells Chapter 8 Gallium Arsenide Solar Cells Chapter 9 Amorphous Silicon Thin Film Solar Cells Chapter 10 Copper Indium Gallium Selenide Thin Film Solar Cells and Cadmium Telluride Thin Film Solar Cells Chapter 11 Optical Optimization Chapter 12 High Conversion Efficiency Technology Appendix 1 Physical Constants Appendix 2 Exercises and Solutions Appendix 3 Roth & Rau Solar Cell Production Equipment Appendix 4 Semilab Solar Cell Testing Equipment English-Chinese Index Chinese-English Index
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