This monograph discusses specific examples of selfdual gauge field structures, including the Chern-Simons model, the abelian-Higgs model, and Yang-Mills gauge field theory. The author builds a foundation for gauge theory and selfdual vortices by introducing the basic mathematical language of gauge theory and formulating examples of Chern-Simons-Higgs theories (in both abelian and non-abelian settings). Thereafter, the Electroweak theory and self-gravitating Electroweak strings are examined. The final chapters treat elliptic problems involving Chern-Simmons models, concentration-compactness principles, and Maxwell-Chern-Simons vortices.
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In modern theoretical physics, gauge field theories are of great importance since they keep internal symmetries and account for phenomena such as spontaneous symmetry breaking, the quantum Hall effect, charge fractionalization, superconductivity and supergravity. This monograph discusses specific examples of gauge field theories that exhibit a selfdual structure.
The author builds a foundation for gauge theory and selfdual vortices by introducing the basic mathematical language of the subject and formulating examples ranging from the well-known abelian–Higgs and Yang–Mills models to the Chern–Simons–Higgs theories (in both the abelian and non-abelian settings). Thereafter, the electroweak theory and self-gravitating electroweak strings are also examined, followed by the study of the differential problems that have emerged from the analysis of selfdual vortex configurations; in this regard the author treats elliptic problems involving exponential non-linearities, also in relation to concentration-compactness principles and blow-up analysis.
Many open questions still remain in the field and are examined in this comprehensive work in connection with Liouville-type equations and systems. The goal of this text is to form an understanding of selfdual solutions arising in a variety of physical contexts. Selfdual Gauge Field Vortices: An Analytical Approach is ideal for graduate students and researchers interested in partial differential equations and mathematical physics.
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HardBack. Zustand: Very Good. No Jacket. Progress in Nonlinear Differential Equations and Their Applications, 72.Hardcover. 339 pages. 2008 editon. published in 2008. Very good clean condition, no dustjacket.in Modern Theoretical Physics, Gauge Field Theories Are Of Great Importance Since They Keep Internal Symmetries And Account For Phenomena Such As Spontaneous Symmetry Breaking, The Quantum Hall Effect, Charge Fractionalization, Superconductivity And Supergravity. This Monograph Discusses Specific Examples Of Selfdual Gauge Field Structures, Including The Chernndash;simons Model, The Abelianndash;higgs Model, And Yangndash;mills Gauge Field Theory.the Author Builds A Foundation For Gauge Theory And Selfdual Vortices By Introducing The Basic Mathematical Language Of Gauge Theory And Formulating Examples Of Chernndash;simonsndash;higgs Theories in Both Abelian And Nonndash;abelian Settings. Thereafter, The Electroweak Theory And Selfndash;gravitating Electroweak Strings Are Examined. The Final Chapters Treat Elliptic Problems Involving Chernndash;simmons Models, Concentrationndash;compactness Principles, And Maxwellndash;chernndash;simons Vortices.many Open Questions Still Remain In The Field And Are Examined In This Work In Connection With Liouvillendash;type Equations And Systems. The Goal Of This Text Is To Form An Understanding Of Selfdual Solutions Arising In A Variety Of Physical Contexts And Thus Is Ideal For Graduate Students And Researchers Interested In Partial Differential Equations And Mathematical Physics. Artikel-Nr. 100164418
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Buch. Zustand: Neu. Neuware -In modern theoretical physics, gauge field theories are of great importance since they keep internal symmetries and account for phenomena such as spontaneous symmetry breaking, the quantum Hall effect, charge fractionalization, superconductivity and supergravity. This monograph discusses specific examples of selfdual gauge field structures, including the Chern¿Simons model, the abelian¿Higgs model, and Yang¿Mills gauge field theory.The author builds a foundation for gauge theory and selfdual vortices by introducing the basic mathematical language of gauge theory and formulating examples of Chern¿Simons¿Higgs theories (in both abelian and non-abelian settings). Thereafter, the electroweak theory and self-gravitating electroweak strings are examined. The final chapters treat elliptic problems involving Chern¿Simmons models, concentration-compactness principles, and Maxwell¿Chern¿Simons vortices.Many open questions still remain in the field and are examined in this work in connection with Liouville-type equations and systems. The goal of this text is to form an understanding of selfdual solutions arising in a variety of physical contexts and thus is ideal for graduate students and researchers interested in partial differential equations and mathematical physics.Springer Basel AG in Springer Science + Business Media, Heidelberger Platz 3, 14197 Berlin 340 pp. Englisch. Artikel-Nr. 9780817643102
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Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - In modern theoretical physics, gauge field theories are of great importance since they keep internal symmetries and account for phenomena such as spontaneous symmetry breaking, the quantum Hall effect, charge fractionalization, superconductivity and supergravity. This monograph discusses specific examples of selfdual gauge field structures, including the Chern-Simons model, the abelian-Higgs model, and Yang-Mills gauge field theory.The author builds a foundation for gauge theory and selfdual vortices by introducing the basic mathematical language of gauge theory and formulating examples of Chern-Simons-Higgs theories (in both abelian and non-abelian settings). Thereafter, the electroweak theory and self-gravitating electroweak strings are examined. The final chapters treat elliptic problems involving Chern-Simmons models, concentration-compactness principles, and Maxwell-Chern-Simons vortices.Many open questions still remain in the field and are examined in this work in connection with Liouville-type equations and systems. The goal of this text is to form an understanding of selfdual solutions arising in a variety of physical contexts and thus is ideal for graduate students and researchers interested in partial differential equations and mathematical physics. Artikel-Nr. 9780817643102
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