Description

Book Synopsis
Providing an up-to-date and lucid presentation of phenomena across modern advanced-level solid state physics, this new edition builds on a basic understanding to introduce students to the key research with the minimum of mathematics. It covers cutting-edge topics, including electron transport and magnetism in solids, topological insulators and strongly correlated electrons.

Trade Review
'This book has an excellent choice of both traditional and modern topics, which is not found elsewhere. Students and researchers will find it to be a valuable introduction to advanced solid state physics. The text is lucidly written, and there are many supplementary exercises for students to enhance their understanding.' Sudip Chakravarty, Distinguished Professor and David S. Saxon Presidential Term Chair of Physics, University of California, Los Angeles
'[This book] has an excellent mixture between modern and traditional topics, with emphasis on strongly correlated phenomena … The presentation of the subjects is very pleasing, with important formulas in gray boxes, simple illustrations and instructive tables. Numerous exercises help to deepen the understanding and give additional background on modern developments like, for example, graphene … an ideal textbook for getting acquainted with the most important methods and concepts in modern condensed matter physics …' Matthias Eschrig, Journal of Applied Crystallography

Table of Contents
1. Introduction; 2. Non-interacting electron gas; 3. Born–Oppenheimer approximation; 4. Second quantization; 5. Hartree–Fock approximation; 6. Interacting electron gas; 7. Local magnetic moments in metals; 8. Quenching of local moments: the Kondo problem; 9. Screening and plasmons; 10. Bosonization; 11. Electron-lattice interactions; 12. Superconductivity in metals; 13. Disorder: localization and exceptions; 14. Quantum phase transitions; 15. Quantum hall and other topological states; 16. Electrons at strong coupling: mottness; Index.

Advanced Solid State Physics

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    £59.84

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    RRP £62.99 – you save £3.15 (5%)

    Order before 4pm today for delivery by Thu 25 Jun 2026.

    A Hardback by Philip Phillips

    15 in stock


      View other formats and editions of Advanced Solid State Physics by Philip Phillips

      Publisher: Cambridge University Press
      Publication Date: 3/1/2012 12:00:00 AM
      ISBN13: 9780521194907, 978-0521194907
      ISBN10: 0521194903

      Description

      Book Synopsis
      Providing an up-to-date and lucid presentation of phenomena across modern advanced-level solid state physics, this new edition builds on a basic understanding to introduce students to the key research with the minimum of mathematics. It covers cutting-edge topics, including electron transport and magnetism in solids, topological insulators and strongly correlated electrons.

      Trade Review
      'This book has an excellent choice of both traditional and modern topics, which is not found elsewhere. Students and researchers will find it to be a valuable introduction to advanced solid state physics. The text is lucidly written, and there are many supplementary exercises for students to enhance their understanding.' Sudip Chakravarty, Distinguished Professor and David S. Saxon Presidential Term Chair of Physics, University of California, Los Angeles
      '[This book] has an excellent mixture between modern and traditional topics, with emphasis on strongly correlated phenomena … The presentation of the subjects is very pleasing, with important formulas in gray boxes, simple illustrations and instructive tables. Numerous exercises help to deepen the understanding and give additional background on modern developments like, for example, graphene … an ideal textbook for getting acquainted with the most important methods and concepts in modern condensed matter physics …' Matthias Eschrig, Journal of Applied Crystallography

      Table of Contents
      1. Introduction; 2. Non-interacting electron gas; 3. Born–Oppenheimer approximation; 4. Second quantization; 5. Hartree–Fock approximation; 6. Interacting electron gas; 7. Local magnetic moments in metals; 8. Quenching of local moments: the Kondo problem; 9. Screening and plasmons; 10. Bosonization; 11. Electron-lattice interactions; 12. Superconductivity in metals; 13. Disorder: localization and exceptions; 14. Quantum phase transitions; 15. Quantum hall and other topological states; 16. Electrons at strong coupling: mottness; Index.

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