Geometric and topological methods for quantum field theory - Info and Reading Options
proceedings of the 2009 Villa de Leyva summer school
By Alexander Cardona, Iván Contreras and Andrés F. Reyes-Lega
"Geometric and topological methods for quantum field theory" was published by Cambridge University Press in 2013 - Cambridge, UK, it has 383 pages and the language of the book is English.
“Geometric and topological methods for quantum field theory” Metadata:
- Title: ➤ Geometric and topological methods for quantum field theory
- Authors: Alexander CardonaIván ContrerasAndrés F. Reyes-Lega
- Language: English
- Number of Pages: 383
- Publisher: Cambridge University Press
- Publish Date: 2013
- Publish Location: Cambridge, UK
“Geometric and topological methods for quantum field theory” Subjects and Themes:
- Subjects: ➤ Geometric quantization - Mathematics - SCIENCE / Mathematical Physics - Quantum field theory - Algebraic topology - Geometry, algebraic - Congresses
Edition Specifications:
- Pagination: x, 383 pages
Edition Identifiers:
- The Open Library ID: OL30663106M - OL22643566W
- Online Computer Library Center (OCLC) ID: 856933019
- Library of Congress Control Number (LCCN): 2012048560
- ISBN-13: 9781107026834
- ISBN-10: 1107026830
- All ISBNs: 1107026830 - 9781107026834
AI-generated Review of “Geometric and topological methods for quantum field theory”:
"Geometric and topological methods for quantum field theory" Description:
The Open Library:
"Based on lectures given at the renowed Villa de Leyva summer school, this book provides a unique presentation of modern geometric methods in quantum field theory. Written by experts, it enables readers to enter some of the most fascinating research topics in this subject. Covering a series of topics on geometry, topology, algebra, number theory methods and their applications to quantum field theory, the book covers topics such as Dirac structures, holomorphic bundles and stability, Feynman integrals, geometric aspects of quantum field theory and the standard model, spectral and Riemannian geometry and index theory. This is a valuable guide for graduate students and researchers in physics and mathematics wanting to enter this interesting research field at the borderline between mathematics and physics"--
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