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Quantum Chromodynamics and the Pomeron

Quantum Chromodynamics and the Pomeron

Quantum Chromodynamics and the Pomeron

J. R. Forshaw, University of Manchester
D. A. Ross, University of Southampton
January 2011
This ISBN is for an eBook version which is distributed on our behalf by a third party.
Adobe eBook Reader
9780511893261
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$65.99
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    This volume describes the Pomeron, an object of crucial importance in very high energy particle physics. The book starts with a general description of the Pomeron within the framework of Regge theory. The emergence of the Pomeron within scalar field theory is discussed next, providing a natural foundation on which to develop the more realistic case of QCD. The reggeization of the gluon is demonstrated and used to build the Pomeron of perturbative QCD. The dynamical nature of the Pomeron is then investigated. The role of the Pomeron in small-x deep inelastic scattering and in diffractive scattering is also examined in detail. The volume concludes with a study of the colour dipole approach to high energy scattering and the explicit role of unitarity corrections. This book will be of interest to theoretical and experimental particle physicists, and applied mathematicians.

    • First book on the physics of the Pomeron, fills a gaping hole in the literature
    • Clear pedagogic approach
    • Authors highly regarded for their work in this area; up-to-date with both theory and experiment

    Product details

    January 2011
    Adobe eBook Reader
    9780511893261
    0 pages
    0kg
    79 b/w illus.
    This ISBN is for an eBook version which is distributed on our behalf by a third party.

    Table of Contents

    • Preface
    • 1. What is a Pomeron?
    • 2. A simple example
    • 3. The reggeized gluon
    • 4. The QCD Pomeron
    • 5. From cuts to poles
    • 6. Applications in deep inelastic scattering
    • 7. Diffraction
    • 8. Taming the growth
    • Appendices
    • References
    • Index.
      Authors
    • J. R. Forshaw , University of Manchester
    • D. A. Ross , University of Southampton