Modern Semiconductor Quantum Physics
eBook - PDF

Modern Semiconductor Quantum Physics

  1. 588 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Modern Semiconductor Quantum Physics

About this book

Modern Semiconductor Quantum Physics has the following constituents: (1) energy band theory: pseudopotential method (empirical and ab initio); density functional theory; quasi-particles; LCAO method; k.p method; spin-orbit splitting; effect mass and Luttinger parameters; strain effects and deformation potentials; temperature effects. (2) Optical properties: absorption and exciton effect; modulation spectroscopy; photo luminescence and photo luminescence excitation; Raman scattering and polaritons; photoionization. (3) Defects and Impurities: effective mass theory and shallow impurity states; deep state cluster method, super cell method,Green's function method; carrier recombination kinetics; trapping transient measurements; electron spin resonance; electron lattice interaction and lattice relaxation effects; multi-phonon nonradiative recombination; negative U center, DX center and EL2 Defects. (4) Semiconductor surfaces: two dimensional periodicity and surface reconstruction; surface electronic states; photo-electron spectroscopy; LEED, STM and other experimental methods. (5) Low-dimensional structures: Heterojunctions, quantum wells; superlattices, quantum-confined Stark effect and Wannier-Stark ladder effects; resonant tunneling, quantum Hall effect, quantum wires and quantum dots.This book can be used as an advanced textbook on semiconductor physics for graduate students in physics and electrical engineering departments. It is also useful as a research reference for solid state scientists and semiconductor device engineers.

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Yes, you can access Modern Semiconductor Quantum Physics by Ming Fu Li in PDF and/or ePUB format, as well as other popular books in Biological Sciences & Science General. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Contents
  2. Preface
  3. Chapter 1 The Energy Band Theory of a Perfect Crystal
  4. Chapter 2 Optical Properties of Semiconductors
  5. Chapter 3 Electronic States at Defects and Impurities
  6. Chapter 4 Semiconductor Surfaces
  7. Chapter 5 Low-Dimensional Semiconductor Structures
  8. Appendix A Some Basic Formulae in Quantum Mechanics
  9. Appendix B Some Basic Formulae in Solid State Physics
  10. Appendix C Some Useful Definitions Theorems and Tables in Group Theory
  11. Appendix D Electron-Lattice Interaction Effects in Semiconductor Statistics
  12. Appendix E Macroscopic Optical Response Functions of Solids
  13. Appendix F Quantum Theory of Electron-Phonon Interaction
  14. Appendix G Some Useful Data and Tables
  15. Subject Index