Quantum Theory of Conducting Matter

Newtonian Equations of Motion for a Bloch Electron
Artikelnummer: 978-0-387-74102-4
Einband: Fester Einband
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Quantum Theory of Conducting Matter targets scientists, researchers and graduate-level students focused on experimentation in the fields of physics, chemistry, electrical engineering, and material sciences. Many worked-out problems are included in the book to aid the reader's comprehension of the subject. The authors show an important connection between the conduction electrons and the Fermi surface in an elementary manner in the text. No currently available text explains this connection. The currently active areas of research, high-temperature superconductivity and Quantum Hall Effect, are important subjects in conducting matter physics, and the authors plan to follow up this book with a second, more advanced book on superconductivity and the Quantum Hall Effect.

Quantum Theory of Conducting Matter targets scientists, researchers and graduate-level students focused on experimentation in the fields of physics, chemistry, electrical engineering, and material sciences. Many worked-out problems are included in the book to aid the reader's comprehension of the subject. The authors show an important connection between the conduction electrons and the Fermi surface in an elementary manner in the text. No currently available text explains this connection. The currently active areas of research, high-temperature superconductivity and Quantum Hall Effect, are important subjects in conducting matter physics, and the authors plan to follow up this book with a second, more advanced book on superconductivity and the Quantum Hall Effect.

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VerlagSpringer EN
EinbandFester Einband
Erscheinungsjahr2007
Seitenangabe244 S.
AusgabekennzeichenEnglisch
AbbildungenXX, 244 p. 80 illus., schwarz-weiss Illustrationen
MasseH23.5 cm x B15.5 cm 1'220 g
CoverlagSpringer (Imprint/Brand)
AutorFujita, Shigeji / Ito, Kei

Über den Autor Shigeji Fujita

Shigeji Fujita was awarded his Ph.D. degree in physics from the University of Maryland at College Park in 1960. He subsequently worked as a research assistant and assistant professor at various Japanese and American universities and held visiting appointments at universities around the world. In 1968, he was appointed to a professorship at the Department of Physics of the State University of New York at Buffalo, which is where he still teaches. Professor Fujita conducts research in several areas, among others in equilibrium and non-equilibrium statistical mechanics, the Kinetic Theory of plasmas, gases, liquids and solids, and the Quantum Hall Effect. He has published over 200 articles and eleven books. Akira Suzuki received his Ph.D. in physics from the University of Reading, UK, in 1982. He subsequently worked as a research associate at Purdue University, USA. In 1985 he joined the Canon Inc. Research Center as a chief scientist. In 1993 he was appointed as an associate professor at the Department of Physics, Tokyo University of Science and was promoted to a full professor in 1999. Professor Suzuki's research interests include nonequilibrium statistical mechanics, applications of thermofield dynamics to open quantum systems, and condensed matter physics (transport theory for graphene and carbon nanotubes among others). He has published over 70 papers and seven books (translations and two books including a book, Foundation of Statistical Thermodynamics).

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