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Topology for Physicists Corrected Print Edition
Contributor(s): Schwarz, Albert S. (Author), Levy, Silvio (Translator)
ISBN: 3540547541     ISBN-13: 9783540547549
Publisher: Springer
OUR PRICE:   $170.99  
Product Type: Hardcover
Published: August 1994
Qty:
Annotation: "This is a very interesting book on an important topic both for physics and for mathematics. (...) It starts at the beginning, but is not really for beginners; the physics background develops rapidly, through seven short chapters, and the final eight chapters provide a lightning review of the mathematical topics encountered (...) Part II is the main part of the text, containing a selection of fascinating topics, beautifully presented, to many of which the author has been a significant contributor. The chapters on functional integration, on elliptic operators, their determinants and related index theorems, on calculating instanton contributions and on anomalies are particularly attractive. (...)"
"Bulletin London Mathematical Society"
Additional Information
BISAC Categories:
- Mathematics | Geometry - General
- Science | Physics - Quantum Theory
- Mathematics | Topology - General
Dewey: 514
LCCN: 94013317
Series: Universitext
Physical Information: 0.75" H x 6.14" W x 9.21" (1.37 lbs) 296 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
In recent years topology has firmly established itself as an important part of the physicist's mathematical arsenal. Topology has profound relevance to quantum field theory-for example, topological nontrivial solutions of the classical equa- tions of motion (solitons and instantons) allow the physicist to leave the frame- work of perturbation theory. The significance of topology has increased even further with the development of string theory, which uses very sharp topologi- cal methods-both in the study of strings, and in the pursuit of the transition to four-dimensional field theories by means of spontaneous compactification. Im- portant applications of topology also occur in other areas of physics: the study of defects in condensed media, of singularities in the excitation spectrum of crystals, of the quantum Hall effect, and so on. Nowadays, a working knowledge of the basic concepts of topology is essential to quantum field theorists; there is no doubt that tomorrow this will also be true for specialists in many other areas of theoretical physics. The amount of topological information used in the physics literature is very large. Most common is homotopy theory. But other subjects also play an important role: homology theory, fibration theory (and characteristic classes in particular), and also branches of mathematics that are not directly a part of topology, but which use topological methods in an essential way: for example, the theory of indices of elliptic operators and the theory of complex manifolds.