Geometrodynamics of Gauge Fields: On the Geometry of Yang-Mills and Gravitational Gauge Theories: Mathematical Physics Studies
Autor Eckehard W. Mielkeen Limba Engleză Paperback – 12 iul 2018
Since the discovery of the Higgs boson, concepts of spontaneous symmetry breaking in gravity have come again into focus, and, in this revised edition, these will be exposed in geometric terms. Quantizing gravity remains an open issue: formulating it as a de Sitter type gauge theory in the spirit of Yang-Mills, some new progress in its topological form is presented. After symmetry breaking, Einstein’s standard general relativity with cosmological constant emerges as a classical background. The geometrical structure of BRST quantization with non-propagating topological ghosts is developed in some detail.
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Specificații
ISBN-13: 9783319806389
ISBN-10: 3319806386
Pagini: 373
Ilustrații: XVII, 373 p. 18 illus., 8 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:Softcover reprint of the original 2nd ed. 2017
Editura: Springer International Publishing
Colecția Springer
Seria Mathematical Physics Studies
Locul publicării:Cham, Switzerland
ISBN-10: 3319806386
Pagini: 373
Ilustrații: XVII, 373 p. 18 illus., 8 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:Softcover reprint of the original 2nd ed. 2017
Editura: Springer International Publishing
Colecția Springer
Seria Mathematical Physics Studies
Locul publicării:Cham, Switzerland
Cuprins
Preface.- 1 Historical background.- 2 Geometry of gauge fields.- 3 Maxwell and Yang-Mills theory.- 4 Gravitation as a gauge theory.- 5 Einstein-Cartan theory.- 6 Teleparallelism.- 7 Yang’s theory of gravity.- 8 BRST quantization of gravity.- 9 Gravitational instantons.- 10 Three-dimensional gravity.- 11 Spinor bundles.- 12 Chiral anomalies.- 13 Topological SL(5;R) gauge invariant action.- 14 Geometrodynamics and its extensions.- 15 Color Geometrodynamics.- 16 Geometrodynamical model of quark confinement?- Appendix A Notation and mathematical terms.- Appendix B Calculus of exterior forms.- Appendix C Lie groups.
Notă biografică
Eckehard Mielke has been Professor in the Department of Physics, Universidad Autónoma Metropolitana-Iztapalapa, Mexico since 1997. His work has covered the Wheeler-DeWitt equation, knot theory and wormholes, conformal changes of metrics, Poincaré gauge theory and its metric-affine generalizations, double dual solutions, topological models of gravity with Chern-Simons terms, Ashtekar variables, boson stars, dark matter, and inflationary cosmology.
He is the author of the Springer book "Sonne, Mond und .... Schwarze Locher" (1997) (Sun, Moon and...Black Holes), a popular book offering a short trip through recent developments in astronomy.
He is the author of the Springer book "Sonne, Mond und .... Schwarze Locher" (1997) (Sun, Moon and...Black Holes), a popular book offering a short trip through recent developments in astronomy.
Textul de pe ultima copertă
This monograph aims to provide a unified, geometrical foundation of gauge theories of elementary particle physics. The underlying geometrical structure is unfolded in a coordinate-free manner via the modern mathematical notions of fibre bundles and exterior forms. Topics such as the dynamics of Yang-Mills theories, instanton solutions and topological invariants are included. By transferring these concepts to local space-time symmetries, generalizations of Einstein's theory of gravity arise in a Riemann-Cartan space with curvature and torsion. It provides the framework in which the (broken) Poincaré gauge theory, the Rainich geometrization of the Einstein-Maxwell system, and higher-dimensional, non-abelian Kaluza-Klein theories are developed.
Since the discovery of the Higgs boson, concepts of spontaneous symmetry breaking in gravity have come again into focus, and, in this revised edition, these will be exposed in geometric terms. Quantizing gravityremains an open issue: formulating it as a de Sitter type gauge theory in the spirit of Yang-Mills, some new progress in its topological form is presented. After symmetry breaking, Einstein’s standard general relativity with cosmological constant emerges as a classical background. The geometrical structure of BRST quantization with non-propagating topological ghosts is developed in some detail.
Since the discovery of the Higgs boson, concepts of spontaneous symmetry breaking in gravity have come again into focus, and, in this revised edition, these will be exposed in geometric terms. Quantizing gravityremains an open issue: formulating it as a de Sitter type gauge theory in the spirit of Yang-Mills, some new progress in its topological form is presented. After symmetry breaking, Einstein’s standard general relativity with cosmological constant emerges as a classical background. The geometrical structure of BRST quantization with non-propagating topological ghosts is developed in some detail.
Caracteristici
A comprehensive revision of a classic text relating geometic field theory to modern physics Offers an up-to-date overview of geometrodynamics including minimal topological models Contains new chapters on teleparalelism, Chern-Simons-induced topological 3D gravity and supergravity, quantization via topological ghosts, constrained BF model with SL (5, R) gauge group, and chiral and trace anomalies Provides a detailed exposition of frame bundles in gravity Includes supplementary material: sn.pub/extras