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Gauge Theory and Symplectic Geometry (Hardcover, 1997 ed.): Gert Sabidussi Gauge Theory and Symplectic Geometry (Hardcover, 1997 ed.)
Gert Sabidussi; Edited by Jacques Hurtubise, Francois Lalonde
R4,134 Discovery Miles 41 340 Ships in 18 - 22 working days

Gauge theory, symplectic geometry and symplectic topology are important areas at the crossroads of several mathematical disciplines. The present book, with expertly written surveys of recent developments in these areas, includes some of the first expository material of Seiberg-Witten theory, which has revolutionised the subjects since its introduction in late 1994. Topics covered include: introductions to Seiberg-Witten theory, to applications of the S-W theory to four-dimensional manifold topology, and to the classification of symplectic manifolds; an introduction to the theory of pseudo-holomorphic curves and to quantum cohomology; algebraically integrable Hamiltonian systems and moduli spaces; the stable topology of gauge theory, Morse-Floer theory; pseudo-convexity and its relations to symplectic geometry; generating functions; Frobenius manifolds and topological quantum field theory.

Gauge Theory and Symplectic Geometry (Paperback, Softcover reprint of the original 1st ed. 1997): Gert Sabidussi Gauge Theory and Symplectic Geometry (Paperback, Softcover reprint of the original 1st ed. 1997)
Gert Sabidussi; Edited by Jacques Hurtubise, Francois Lalonde
R4,036 Discovery Miles 40 360 Ships in 18 - 22 working days

Gauge theory, symplectic geometry and symplectic topology are important areas at the crossroads of several mathematical disciplines. The present book, with expertly written surveys of recent developments in these areas, includes some of the first expository material of Seiberg-Witten theory, which has revolutionised the subjects since its introduction in late 1994. Topics covered include: introductions to Seiberg-Witten theory, to applications of the S-W theory to four-dimensional manifold topology, and to the classification of symplectic manifolds; an introduction to the theory of pseudo-holomorphic curves and to quantum cohomology; algebraically integrable Hamiltonian systems and moduli spaces; the stable topology of gauge theory, Morse-Floer theory; pseudo-convexity and its relations to symplectic geometry; generating functions; Frobenius manifolds and topological quantum field theory.

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