Noncommutative Geometry and the Standard Model of Elementary Particle Physics

Noncommutative Geometry and the Standard Model of Elementary Particle Physics
Author: Florian Scheck,Wend Werner,Harald Upmeier
Publsiher: Springer
Total Pages: 350
Release: 2008-01-11
Genre: Science
ISBN: 9783540460824

Download Noncommutative Geometry and the Standard Model of Elementary Particle Physics Book in PDF, Epub and Kindle

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.

Noncommutative Geometry and the Standard Model of Elementary Particle Physics

Noncommutative Geometry and the Standard Model of Elementary Particle Physics
Author: Florian Scheck,Wend Werner,Harald Upmeier
Publsiher: Springer
Total Pages: 350
Release: 2002-11-26
Genre: Science
ISBN: 3540440712

Download Noncommutative Geometry and the Standard Model of Elementary Particle Physics Book in PDF, Epub and Kindle

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.

Computational Science ICCS 2002

Computational Science   ICCS 2002
Author: Peter M. A. Sloot
Publsiher: Unknown
Total Pages: 0
Release: 2002
Genre: Computational Mathematics and Numerical Analysis
ISBN: 8354046087

Download Computational Science ICCS 2002 Book in PDF, Epub and Kindle

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.

Noncommutative Geometry and Particle Physics

Noncommutative Geometry and Particle Physics
Author: Walter D. van Suijlekom
Publsiher: Springer
Total Pages: 246
Release: 2014-07-21
Genre: Science
ISBN: 9789401791625

Download Noncommutative Geometry and Particle Physics Book in PDF, Epub and Kindle

This book provides an introduction to noncommutative geometry and presents a number of its recent applications to particle physics. It is intended for graduate students in mathematics/theoretical physics who are new to the field of noncommutative geometry, as well as for researchers in mathematics/theoretical physics with an interest in the physical applications of noncommutative geometry. In the first part, we introduce the main concepts and techniques by studying finite noncommutative spaces, providing a “light” approach to noncommutative geometry. We then proceed with the general framework by defining and analyzing noncommutative spin manifolds and deriving some main results on them, such as the local index formula. In the second part, we show how noncommutative spin manifolds naturally give rise to gauge theories, applying this principle to specific examples. We subsequently geometrically derive abelian and non-abelian Yang-Mills gauge theories, and eventually the full Standard Model of particle physics, and conclude by explaining how noncommutative geometry might indicate how to proceed beyond the Standard Model.

Geometry of the Standard Model of Elementary Particles

Geometry of the Standard Model of Elementary Particles
Author: Andrzej Derdzinski
Publsiher: Springer Science & Business Media
Total Pages: 205
Release: 2013-12-01
Genre: Science
ISBN: 9783642503108

Download Geometry of the Standard Model of Elementary Particles Book in PDF, Epub and Kindle

The book gives an exposition of the standard model of elementary particles based on coordinate-free differential geometric foundations. It addresses students in physics and mathematics.

Noncommutative Geometry and Particle Physics

Noncommutative Geometry and Particle Physics
Author: Walter van Suijlekom
Publsiher: Springer
Total Pages: 237
Release: 2014-07-27
Genre: Science
ISBN: 9401791635

Download Noncommutative Geometry and Particle Physics Book in PDF, Epub and Kindle

This book provides an introduction to noncommutative geometry and presents a number of its recent applications to particle physics. It is intended for graduate students in mathematics/theoretical physics who are new to the field of noncommutative geometry, as well as for researchers in mathematics/theoretical physics with an interest in the physical applications of noncommutative geometry. In the first part, we introduce the main concepts and techniques by studying finite noncommutative spaces, providing a “light” approach to noncommutative geometry. We then proceed with the general framework by defining and analyzing noncommutative spin manifolds and deriving some main results on them, such as the local index formula. In the second part, we show how noncommutative spin manifolds naturally give rise to gauge theories, applying this principle to specific examples. We subsequently geometrically derive abelian and non-abelian Yang-Mills gauge theories, and eventually the full Standard Model of particle physics, and conclude by explaining how noncommutative geometry might indicate how to proceed beyond the Standard Model.

Noncommutative Geometry Quantum Fields and Motives

Noncommutative Geometry  Quantum Fields and Motives
Author: Alain Connes,Matilde Marcolli
Publsiher: American Mathematical Soc.
Total Pages: 785
Release: 2019-03-13
Genre: Electronic Book
ISBN: 9781470450458

Download Noncommutative Geometry Quantum Fields and Motives Book in PDF, Epub and Kindle

The unifying theme of this book is the interplay among noncommutative geometry, physics, and number theory. The two main objects of investigation are spaces where both the noncommutative and the motivic aspects come to play a role: space-time, where the guiding principle is the problem of developing a quantum theory of gravity, and the space of primes, where one can regard the Riemann Hypothesis as a long-standing problem motivating the development of new geometric tools. The book stresses the relevance of noncommutative geometry in dealing with these two spaces. The first part of the book deals with quantum field theory and the geometric structure of renormalization as a Riemann-Hilbert correspondence. It also presents a model of elementary particle physics based on noncommutative geometry. The main result is a complete derivation of the full Standard Model Lagrangian from a very simple mathematical input. Other topics covered in the first part of the book are a noncommutative geometry model of dimensional regularization and its role in anomaly computations, and a brief introduction to motives and their conjectural relation to quantum field theory. The second part of the book gives an interpretation of the Weil explicit formula as a trace formula and a spectral realization of the zeros of the Riemann zeta function. This is based on the noncommutative geometry of the adèle class space, which is also described as the space of commensurability classes of Q-lattices, and is dual to a noncommutative motive (endomotive) whose cyclic homology provides a general setting for spectral realizations of zeros of L-functions. The quantum statistical mechanics of the space of Q-lattices, in one and two dimensions, exhibits spontaneous symmetry breaking. In the low-temperature regime, the equilibrium states of the corresponding systems are related to points of classical moduli spaces and the symmetries to the class field theory of the field of rational numbers and of imaginary quadratic fields, as well as to the automorphisms of the field of modular functions. The book ends with a set of analogies between the noncommutative geometries underlying the mathematical formulation of the Standard Model minimally coupled to gravity and the moduli spaces of Q-lattices used in the study of the zeta function.

Symmetry and the Standard Model

Symmetry and the Standard Model
Author: Matthew Robinson
Publsiher: Springer Science & Business Media
Total Pages: 343
Release: 2011-08-17
Genre: Science
ISBN: 9781441982674

Download Symmetry and the Standard Model Book in PDF, Epub and Kindle

While theoretical particle physics is an extraordinarily fascinating field, the incredibly fast pace at which it moves along, combined with the huge amount of background information necessary to perform cutting edge research, poses a formidable challenge for graduate students. This book represents the first in a series designed to assist students in the process of transitioning from coursework to research in particle physics. Rather than reading literally dozens of physics and mathematics texts, trying to assimilate the countless ideas, translate notations and perspectives, and see how it all fits together to get a holistic understanding, this series provides a detailed overview of the major mathematical and physical ideas in theoretical particle physics. Ultimately the ideas will be presented in a unified, consistent, holistic picture, where each topic is built firmly on what has come before, and all topics are related in a clear and intuitive way. This introductory text on quantum field theory and particle physics provides both a self-contained and complete introduction to not only the necessary physical ideas, but also a complete introduction to the necessary mathematical tools. Assuming minimal knowledge of undergraduate physics and mathematics, this book lays both the mathematical and physical groundwork with clear, intuitive explanations and plenty of examples. The book then continues with an exposition of the Standard Model of Particle Physics, the theory that currently seems to explain the universe apart from gravity. Furthermore, this book was written as a primer for the more advanced mathematical and physical ideas to come later in this series.