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Defects & Geometry in Condensed Matter Physics

AUTHOR: David R. Nelson
ISBN: 0521004004

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Defects & Geometry in Condensed Matter Physics
- Book Review,
by David R. Nelson


From Book News, Inc.
Based on nearly twenty years of contributions to various reviews, schools and workshops, Nelson (physics, Harvard U.) presents this graduate-level introductory text on defects and geometry in condensed matter physics. Coverage includes fluctuations, renormalization and universality; defect-mediated phase transitions; order, frustration and two-dimensional glass; the structure and statistical mechanics of three-dimensional glass; the statistical mechanics of crumpled membranes; defects in superfluids, superconductors and membranes; vortex-line fluctuations in superconductors from elementary quantum mechanics; correlations and transport in vortex liquids; and statistical mechanics of directed polymers. For graduate students in physics, physical chemistry and chemical engineering, as well as more advanced researchers.Copyright © 2004 Book News, Inc., Portland, OR


Review
"The book provides an admirable overview of Nelson's achievements and of their relation to other works." Physics Today

"This book exposes the common grounds of several apparently disconnected problems of actual relevance in condensed matter theory. This is an ambitious goal that the book accomplishes quite successfully.... The book by Dr. Nelson will be welcomed by the scientific community, and it is certainly a necessary item in the library of any condensed matter physicist working on this and related areas." Journal of Statistical Physics

"...his excellent surveys in the proceedings of summer schools, workshops, and conferences from 1983 to 1996. Defects and Geometry in Condensed Matter Physics is primarily a compilation (of Nelson's surveys)....It is valuable to have all these contributions collected in one volume." Physics Today


Book Description
Defects and geometrical patterns embedded in orderly arrays of atoms and molecules explain important everyday phenomena such as why soap is slippery, why steel is strong, and how a liquid crystal display device works. An understanding of how to pin vortex defects in superconductors is essential for applications such as magnetic levitation and improved magnetic resonance imaging devised for medical diagnosis. This book discusses the crucial role played by defects and geometry in disrupting order in solids, superconductors, superfluids, liquid crystals and polymers.


Book Info
Provides a coherent and pedagogic graduate level introduction to the field of defects and geometry.


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         Book Review

Defects & Geometry in Condensed Matter Physics
- Book Reviews,
by David R. Nelson

Defects and Geometry in Condensed Matter Physics

FROM THE PUBLISHER

Defects and geometrical patterns embedded in orderly arrays of atoms and molecules explain important everyday phenomena such as why soap is slippery, why steel is strong, and how a liquid crystal display device works. An understanding of how to pin vortex defects in superconductors is essential for applications such as magnetic levitation and improved magnetic resonance imaging devised for medical diagnosis. This book discusses the crucial role played by defects and geometry in disrupting order in solids, superconductors, superfluids, liquid crystals and polymers.

FROM THE CRITICS

Booknews

Based on nearly twenty years of contributions to various reviews, schools and workshops, Nelson (physics, Harvard U.) presents this graduate-level introductory text on defects and geometry in condensed matter physics. Coverage includes fluctuations, renormalization and universality; defect-mediated phase transitions; order, frustration and two-dimensional glass; the structure and statistical mechanics of three-dimensional glass; the statistical mechanics of crumpled membranes; defects in superfluids, superconductors and membranes; vortex-line fluctuations in superconductors from elementary quantum mechanics; correlations and transport in vortex liquids; and statistical mechanics of directed polymers. For graduate students in physics, physical chemistry and chemical engineering, as well as more advanced researchers. Annotation c. Book News, Inc., Portland, OR (booknews.com)


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