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Contents: Lectures:Supermembranes: An Introduction (M J Duff)An Introduction to p-Branes (K S Stelle)Notes on Matrix Strings and Fivebranes (H Verlinde et al.)Intersecting Branes (J P Gauntlett)BPS Bound States, Supermembranes, and T-Duality in M Theory (J G Russo)D=6, N=1 String Vacua and Duality (L E Ibáñez & A M Uranga)Flat Symplectic Bundles of N-Extended Supergravities, Central Charges and Black-Hole Entropy (S Ferrara et al.)Black Hole Thermodynamics and String Theory (S R Das)Seminars:One-Instanton Calculations in N=2 Supersymmetric Gauge Theories (K Ito)Field Theory on Coadjoint Orbit and Self-Dual Chern-Simons Solitons (P Oh)Cohomological Yang-Mills Theory in Eight Dimensions (H Kanno et al.)Charged BTZ Black Hole as a Global Vortex in Anti-de Sitter Space–Time: A Bridge by Duality (Y Kim et al.)Tensionless Gravitational String in D=6, N=1 Heterotic String Vacua (N Kim et al.)Quantum Ergoregion Instability (G Kang) Readership: High energy physicists. Keywords:
String theory is a model of fundamental physics whose building blocks are one-dimensional extended objects called strings, rather than the zero-dimensional point particles that form the basis for the standard model of particle physics. The phrase is often used as shorthand for Superstring theory, as well as related theories such as M-theory. By replacing the point-like particles with strings, an apparently consistent quantum theory of gravity emerges. Moreover, it may be possible to 'unify' the known natural forces (gravitational, electromagnetic, weak nuclear and strong nuclear) by describing them with the same set of equations. Studies of string theory have revealed that it predicts higher-dimensional objects called branes. String theory strongly suggests the existence of ten or eleven (in M-theory) space-time dimensions, as opposed to the usual four (three spatial and one temporal) used in relativity theory.
This is the first systematic introduction to electromagnetic duality and its generalisations. The authors are the leading figures in this exciting new area of mathematical physics, and their lectures have been organised not only to link with each other but also to describe the fundamental ideas, the latest developments, and some earlier work whose significance has only recently become apparent. This will be essential reading for all those working in mathematical physics.
String theory, sometimes called the ``Theory of Everything'', has the potential to provide answers to key questions involving quantum gravity, black holes, supersymmetry, cosmology, singularities and the symmetries of nature. This multi-authored book summarizes the latest results across all areas of string theory from the perspective of world-renowned experts, including Michael Green, David Gross, Stephen Hawking, John Schwarz, Edward Witten and others. The book comes out of the``Strings 2001'' conference, organized by the Tata Institute for Fundamental Research (Mumbai, India), the Abdus Salam ICTP (Trieste, Italy), and the Clay Mathematics Institute (Cambridge, MA, USA). Individual articles discuss the study of D-branes, black holes, string dualities, compactifications,Calabi-Yau manifolds, conformal field theory, noncommutative field theory, string field theory, and string phenomenology. Numerous references provide a path to previous findings and results. Written for physicists and mathematicians interested in string theory, the volume is a useful resource for any graduate student or researcher working in string theory, quantum field theory, or related areas.
Proceedings of the February 1997 symposium at the Asia-Pacific Center for Theoretical Physics. Eight presentations and six seminars provide a basic framework for the study of the dualities in gauge and string theories and examine such topics as matrix strings and fivebranes, black hole thermodynamics and string theory, and cohomological Yang-Mills theory in eight dimensions. No index. Annotation copyrighted by Book News, Inc., Portland, OR