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    The Lund Model

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    Author(s)
    Andersson, Bo
    Collection
    SCOAP3 for Books
    Language
    English
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    Abstract
    The Lund model, inspired by quantum chromodynamics, has provided a promising approach to the dynamics of quark and gluon interactions. Starting with a brief reprise of basic concepts in relativity, quantum mechanics of fields and particle physics, this book discusses: the dynamics of the massless relativistic string; confinement; causality and relativistic covariance; Lund fragmentation processes; QED and QCD Bremsstrahlung; multiplicities and particle-parton distributions. Throughout the book, theory is confronted with current experimental data, and implications for future experiments are also considered. The book also explores the relationships between the Lund model and other models based on field theory (the Schwinger model, S-matrix models, light-cone algebra physics and variations of the parton model), and models based on statistical mechanics (the Feynman-Wilson gas, scaling, iterative cascade models).
    URI
    https://library.oapen.org/handle/20.500.12657/64003
    Keywords
    Relativistic kinematics; electromagnetic fields; virtual quanta; renormalisation; deep inelastic scattering; parton model; massless relativistic string; string decay; Lund model; fragmentation formulae; Regge theory; flavour; transverse momentum generation; meson ratio; heavy quark fragmentation; baryon production; Hanbury–Brown–Twiss-effect; Lund gluon model; gluon emission; multigluon emission; lambda measure; perturbative QCD; inelastic lepto-production; heretical structure functions; hadronic interaction models
    DOI
    10.1017/9781009401296
    ISBN
    9781009401296, 9781009401296
    Publisher
    Cambridge University Press
    Publication date and place
    1998
    Grantor
    • SCOAP3 - [...]
    Classification
    Nuclear physics
    Rights
    https://creativecommons.org/licenses/by-nc-nd/4.0/
    • Imported or submitted locally

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    License

    • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

    Credits

    • logo EU
    • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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