Noncommutative geometry and the standard model of elementary particle physics / F. Scheck, H. Upmeier, W. Werner (eds.).

Contributor(s): Scheck, Florian, 1936- | Upmeier, Harald, 1950- | Werner, W. (Wend), 1958-
Material type: TextTextSeries: Lecture notes in physics: 596.Publisher: Berlin ; New York : Springer, ©2002Description: 1 online resource (xii, 346 pages)Content type: text Media type: computer Carrier type: online resourceISBN: 9783540460824; 3540460829Subject(s): Standard model (Nuclear physics) -- Mathematics -- Congresses | Noncommutative differential geometry -- Congresses | Mathematical physics -- Congresses | Mathematical physics | Noncommutative differential geometry | Standard model (Nuclear physics) -- MathematicsGenre/Form: Electronic books. | Conference papers and proceedings. Additional physical formats: Print version:: Noncommutative geometry and the standard model of elementary particle physics.DDC classification: 539.7/2 LOC classification: QC794.6.S75 | N66 2002Online resources: Click here to access online
Contents:
Foundations of Noncommutative Geometry and Basic Model Building -- The Lagrangian of the Standard Model Derived From Noncommutative Geometry -- New Directions in Noncommutative Geometry and Mathematical Physics 233.
Summary: The outcome of a close collaboration between mathematicians and mathematical physicists, these lecture notes present the foundations of A. Connes noncommutative geometry as well as its applications in particular to the field of theoretical particle physics. The coherent and systematic approach makes this book useful for experienced researchers and postgraduate students alike.
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Includes bibliographical references.

Foundations of Noncommutative Geometry and Basic Model Building -- The Lagrangian of the Standard Model Derived From Noncommutative Geometry -- New Directions in Noncommutative Geometry and Mathematical Physics 233.

The outcome of a close collaboration between mathematicians and mathematical physicists, these lecture notes present the foundations of A. Connes noncommutative geometry as well as its applications in particular to the field of theoretical particle physics. The coherent and systematic approach makes this book useful for experienced researchers and postgraduate students alike.

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