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書名:Quantum Mechanics (PNIE) 作者:McIntyre 出版社:Pearson 出版日期:2014/00/00 ISBN:9781292020839 目錄 1. Stern-Gerlach Experiments 2. Operators And Measurement 3. Schrödinger Time Evolution 4. Quantized Energies: Particle in a Box 5. Quantum Spookiness 6. Unbound States 7. Angular Momentum 8. Hydrogen Atom 9. Harmonic Oscillator 10. Perturbation Theory 11. Hyperfine Structure and the Addition of Angular Momentum 12. Perturbation of Hydrogen 13. Identical Particles 14. Time dependent perturbation theory 15. Periodic Systems 16. Modern Applications of Quantum Mechanics 17. Appendix: Physical Constants 18. Appendix: Integrals 19. Appendix: Matrices 20. Appendix: Waves and Fourier Analysis 21. Appendix: Separation of Variables 22. Appendix: Complex Numbers 23. Appendix: Probability 24. Useful Definitions and Equations 25. Spin and Angular Momentum Relations; Bound State Systems; Fundamental Constants 26. Preface
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【簡介】 With its strong pedagogy, superior readability, and thorough examination of the physics of semiconductor material, Semiconductor Physics and Devices provides a basis for understanding the characteristics, operation, and limitations of semiconductor devices. Neamen's Semiconductor Physics and Devices deals with the electrical properties and characteristics of semiconductor materials and devices. The goal of this book is to bring together quantum mechanics, the quantum theory of solids, semiconductor material physics, and semiconductor device physics in a clear and understandable way. 【目錄】 Part I Semiconductor Material Properties Chapter 1: The Crystal Structure of Solids Chapter 2: Introduction to Quantum Mechanics Chapter 3: Introduction to the Quantum Theory of Solids Chapter 4: The Semiconductor in Equilibrium Chapter 5: Carrier Transport Phenomena Chapter 6: Nonequilibrium Excess Carriers in Semiconductors Part II Fundamental Semiconductor Devices Chapter 7: The pn Junction Chapter 8: The pn Junction Diode Chapter 9: Metal-Semiconductor and Semiconductor Heterojunctions Chapter 10: Fundamentals of the Metal-Oxide-Semiconductor Field-Effect Transistor Chapter 11: Metal-Oxide-Semiconductor Field-Effect Transistor: Additional Concepts Chapter 12: The Bipolar Transistor Chapter 13: The Junction Field-Effect Transistor Part III Specialized Semiconductor Devices Chapter 14: Optical Devices Chapter 15: Semiconductor Microwave and Power Devices
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【簡介】 Semiconductors are the foundation of the electronics industry, and are therefore embedded in virtually all modern technology. No engineer or materials scientist can be without an understanding of this essential field. Since semiconductors are also the foundation of solar cells, they play an increasingly critical role in the transition to sustainable technology and promise, as a result, to become even more central in global technological progress. Fundamentals of Semiconductor Materials and Devices is a textbook that presents the advanced principles underlying semiconductors in an accessible and comprehensive way. Combining material from both engineering and physics, it remains grounded throughout in practical applications of semiconductors. Its approach makes it ideal for readers looking to gain a thorough understanding of this ubiquitous technology. Fundamentals of Semiconductor Materials and Devices readers will also find: Questions and exercises to stimulate learning and increase comprehension Introductory chapters detailing the fundamentals of quantum and solid state physics, as well as the foundational principles of semiconductor tech Detailed analysis of topics including flash memory, the quantum dot, two-dimensional semiconductor materials, and more Fundamentals of Semiconductor Materials and Devices is a valuable guide for students and researchers in any area of engineering, physics, or materials science. 【目錄】 Chapter 1 Introduction to Quantum Mechanics Chapter 2 Semiconductor Physics Chapter 3 The p-n Junction Diode Chapter 4 Photon Emission and Absorption Chapter 5 Semiconductor Devices Based on the p-n Junction Chapter 6 The Metal Oxide Semiconductor Field Effect Transistor Chapter 7 The Quantum Dot Chapter 8 Organic Semiconductor Materials and Devices Chapter 9 One- and Two-Dimensional Semiconductor Materials and Devices Appendix 1: Physical Constants Appendix 2: Derivation of the Uncertainty Principle Appendix 3: Derivation of Group Velocity Appendix 4: Reduced Mass Appendix 5: The Boltzmann Distribution Function Appendix 6: Properties of Semiconductor Materials Appendix 7: Calculation of the Bonding and Antibonding Orbital Energies Versus Interproton Separation for the Hydrogen Molecular Ion