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Quantum Transport in Mesoscopic Systems: Complexity and Statistical Fluctuations. A Maximum Entropy Viewpoint [Kõva köide]

(, Instituto de Fisica, UNAM, Mexico City, Mexico), (, Director, Raman Research Institute, Bangalore, India)
  • Formaat: Hardback, 416 pages, kõrgus x laius x paksus: 242x165x21 mm, kaal: 741 g, numerous line drawings
  • Sari: Mesoscopic Physics and Nanotechnology 4
  • Ilmumisaeg: 20-May-2004
  • Kirjastus: Oxford University Press
  • ISBN-10: 0198525826
  • ISBN-13: 9780198525820
  • Formaat: Hardback, 416 pages, kõrgus x laius x paksus: 242x165x21 mm, kaal: 741 g, numerous line drawings
  • Sari: Mesoscopic Physics and Nanotechnology 4
  • Ilmumisaeg: 20-May-2004
  • Kirjastus: Oxford University Press
  • ISBN-10: 0198525826
  • ISBN-13: 9780198525820
A graduate textbook and reference for researchers presenting a statistical theory of certain complex wave-interference phenomena of interest in mesoscopic physics: the statistical fluctuations of transmission and reflection in waves. A recurring theme is the universality of the statistical behavior, in the sense that it involves a relatively small number of relevant physical parameters, while the rest of the system's details serve as mere scaffolding. Annotation ©2004 Book News, Inc., Portland, OR (booknews.com)

This book presents the statistical theory of complex wave scattering and quantum transport in physical systems which have chaotic classical dynamics, as in the case of microwave cavities and quantum dots, or which possess quenched randomness, as in the case of disordered conductors - with an emphasis on mesoscopic fluctuations. The statistical regularity of the phenomena is revealed in a natural way by adopting a novel maximum-entropy approach. Shannon's information entropy is maximised, subject to the symmetries and constraints which are physically relevant, within the powerful and non-perturbative theory of random matrices; this is a most distinctive feature of the book. Aiming for a self-contained presentation, the quantum theory of scattering, set in the context of quasi-one-dimensional, multichannel systems, and related directly to scattering problems in mesoscopic physics, is introduced in chapters two and three. The linear-response theory of quantum electronic transport, adapted to the context of mesoscopic systems, is discussed in chapter four. These chapters, together with chapter five on the maximum-entropy approach and chapter eight on weak localization, have been written in a most pedagogical style, suitable for use on graduate courses. In chapters six and seven, the problem of electronic transport through classically chaotic cavities and quasi-one-dimensional disordered systems is discussed. Many exercises are included, most of which are worked through in detail, aiding graduate students, teachers, and research scholars interested in the subject of quantum transport through disordered and chaotic systems.

Arvustused

Its great strength is that it provides a consistent, systematic introduction to the major ideas of the field and includes a lot of related material that provides important intellectual context. * Allan MacDonald, University of Texas at Austin * ...a most important and timely topic. [ ...] There are other books, but not at the same level of depth. * John Spence, Arizona State University *




Pier A. Mello, Instituto de Fisica, U.N.A.M., Apartado Postal 20-364, Delegacion A. Obregon, 01000 Mexico D.F., Mexico. Tel: +52 55 5622 5142, Fax: +52 55 5622 5015, Email: mello@fisica.unam.mx Present position: Distinguished Professor of Physics at Instituto de Fisica, U.N.A.M., Mexico

Narendra Kumar, Raman Research Institute, C.V. Raman Avenue, Bangalore 560080, Karnataka State, India. Tel: +91 80 361 1012, Fax: +91 80 361 0492, Email: nkumar@rri.res.in Present position: Director, Raman Research Institute, Bangalore