Physics of Condensed Matter

Physics of Condensed Matter
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Prasanta Misra
1558 g
244x202x37 mm

Physics of Condensed Matter is designed for a two-semester graduate course on condensed matter physics for students in physics and materials science. While the book offers fundamental ideas and topic areas of condensed matter physics, it also includes many recent topics of interest on which graduate students may choose to do further research. The text can also be used as a one-semester course for advanced undergraduate majors in physics, materials science, solid state chemistry, and electrical engineering, because it offers a breadth of topics applicable to these majors. The book begins with a clear, coherent picture of simple models of solids and properties and progresses to more advanced properties and topics later in the book. It offers a comprehensive account of the modern topics in condensed matter physics by including introductory accounts of the areas of research in which intense research is underway. The book assumes a working knowledge of quantum mechanics, statistical mechanics, electricity and magnetism and Green's function formalism (for the second-semester curriculum).
Chapter 1. Basic Properties of CrystalsChapter 2. Phonons and Lattice VibrationsChapter 3. Free Electron ModelChapter 4. Nearly Free Electron ModelChapter 5. Band Structure CalculationsChapter 6. Static and Transport Properties of SolidsChapter 7. Electron-Electron InteractionChapter 8. Dynamics of Bloch ElectronsChapter 9. SemiconductorsChapter 10. ElectronicsChapter 11. SpintronicsChapter 12. Diamagnetism and ParamagnetismChapter 13. Magnetic Ordering Chapter 14. SuperconductivityChapter 15. Heavy FermionsChapter 16. Metallic NanoclustersChapter 17. Complex StructuresChapter 18. Novel MaterialsAppendix A. Space Groups and Point GroupsAppendix B. Mossbauer EffectAppendix C. Introduction to Renormalization Group Approach

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