Quantum Fields and Quantum Space Time

Author:   Gerard 't Hooft ,  Arthur Jaffe ,  Gerhard Mack ,  Pronob K. Mitter
Publisher:   Springer-Verlag New York Inc.
Edition:   Softcover reprint of the original 1st ed. 1997
Volume:   364
ISBN:  

9781489918031


Pages:   374
Publication Date:   11 June 2013
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Quantum Fields and Quantum Space Time


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Author:   Gerard 't Hooft ,  Arthur Jaffe ,  Gerhard Mack ,  Pronob K. Mitter
Publisher:   Springer-Verlag New York Inc.
Imprint:   Springer-Verlag New York Inc.
Edition:   Softcover reprint of the original 1st ed. 1997
Volume:   364
Dimensions:   Width: 15.50cm , Height: 2.00cm , Length: 23.50cm
Weight:   0.587kg
ISBN:  

9781489918031


ISBN 10:   1489918035
Pages:   374
Publication Date:   11 June 2013
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Lectures.- Non-commutative gauge fields from quantum groups.- Duality in N = 2 SUSY SU(2) Yang—Mills theory: a pedagogical introduction.- Noncommutative differential geometry and the structure of space time.- Quantum integrable models on 1 + 1 discrete space time.- Supersymmetry and non-commutative geometry.- Turbulence under a magnifying glass.- Quantization of space and time in 3 and in 4 space-time dimensions.- Pushing Einstein’s principles to the extreme.- Integrable classical and quantum gravity.- Quantum affine algebras and integrable quantum systems.- Exercises in equivariant cohomology.- Some complex quantum manifolds and their geometry.- Seminars.- T-duality and the moment map.- Symmetries of dimensionally reduced string effective action.- Non local observables and confinement in BF formulation of Yang-Mills theory.- Disorder operators, quantum doubles, and Haag duality in 1+ 1 dimensions.- The cohomology and homology of quantum field theory.

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