Quantum Theory of Materials
eBook - PDF

Quantum Theory of Materials

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

Quantum Theory of Materials

About this book

This accessible new text introduces the theoretical concepts and tools essential for graduate-level courses on the physics of materials in condensed matter physics, physical chemistry, materials science and engineering, and chemical engineering. Topics covered range from fundamentals such as crystal periodicity and symmetry, and derivation of single-particle equations, to modern additions including graphene, two-dimensional solids, carbon nanotubes, topological states, and Hall physics. Advanced topics such as phonon interactions with phonons, photons and electrons, and magnetism, are presented in an accessible way, and a set of appendices reviewing crucial fundamental physics and mathematical tools makes this text suitable for students from a range of backgrounds. Students will benefit from the emphasis on translating theory into practice, with worked examples explaining experimental observations, applications illustrating how theoretical concepts can be applied to real research problems, and 242 informative full color illustrations. End-of chapter exercises are included for homework and self-study, with solutions and lecture slides for instructors available online.

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Yes, you can access Quantum Theory of Materials by Efthimios Kaxiras,John D. Joannopoulos in PDF and/or ePUB format, as well as other popular books in Scienze fisiche & Fisica. We have over one million books available in our catalogue for you to explore.

Information

Table of contents

  1. Cover
  2. Half-title
  3. Title page
  4. Copyright information
  5. Contents
  6. List of Figures
  7. List of Tables
  8. Preface
  9. Acknowledgments
  10. 1 From Atoms to Solids
  11. 2 Electrons in Crystals: Translational Periodicity
  12. 3 Symmetries Beyond Translational Periodicity
  13. 4 From Many Particles to the Single-Particle Picture
  14. 5 Electronic Properties of Crystals
  15. 6 Electronic Excitations
  16. 7 Lattice Vibrations and Deformations
  17. 8 Phonon Interactions
  18. 9 Dynamics and Topological Constraints
  19. 10 Magnetic Behavior of Solids
  20. Appendices
  21. Index