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An objective evaluation of the classical and quantum approaches to the description of these processes. The topics covered include: experimental data, kinematic properties of inclusive spectra, statistical models, hydrodynamical theory, the multiperipheral model, scale invariance, the method of complex angular moments, inclusive processes and the Parton model. Annotation copyrighted by Book News, Inc., Portland, OR
Contents: Experiment:Hadron Production in High Energy Collisions of Leptons with Nucleons and Nuclei (N Schmitz)Particle Production in Continuum e+e- Annihilation at High Energy (M Derrick & Abachi)Selected Results on Multihadron Production at ISR Energies (R Campanini)Hadron-Nuclear Interactions (W D Walker & P C Bhat)Diffractive Multiparticle Production (K Goulianos)Bose-Einstein Correlations: From Statistics to Dynamics (W A Zajc)Multihadron Events in Cosmic Rays (T Stanev & G B Yodh)Theory:The Pomeron in QCD (A R White)Problems in Hadronization Physics (B Andersson)The Concept of Inelasticity in High Energy Reactions (G Wilk)Dual Parton Model (A Capella et al.)Application of the Methods of Quantum Optics to Multihadron Production (G N Fowler & R M Weiner)A Unified Physical Picture of Multiparticle Emission in pp and e+e- Collisions (T T Chou & C N Yang)Branching Processes in Multiparticle Production (R C Hwa)Multiparticle Production at High Energy and Superclustering Processes (C C Shih)“Fireball” Models and Statistical Methods in Multiparticle Production Processes (T C Meng)Toward a Statistical Description of Deconfinement Transition (P Carruthers & I Sarcevic) Readership: High energy physicists. Keywords:Hadron Production;High Energy Collisions;Bose-Einstein Correlations;Pomeron;Hadronization Physics
This volume concentrates on three main areas of current research in high energy physics: (1) multiparticle and diffractive production in perturbative and nonperturbative QCD, (2) confinement-deconfinement mechanism and the RHIC physics, and (3) interface between high-energy collisions and cosmic-ray/astro-physics. The specific topics covered include: QCD at high energies, diffractive production, and small-x physics, multiparticle production and systematics: correlations and fluctuations, hadronic final states in e+e-, lepton-hadron and hadron-hadron collisions, relativistic heavy ion collisions, interface between high-energy collisions and cosmic-ray physics, and recent development in deconfinement.
The main theme of this workshop, the fourth meeting in the LESIP series, is correlations and Fluctuations in strong interaction processes. While the emphasis was on Bose-Einstein correlations between identical particles, other kinds of correlations (between non-identical particles, multiplicity distributions, transverse energy distributions, inelasticity distributions etc.) were addressed. The recent developments in fractal dynamics, intermittency, deterministic chaos and information entropy and their roles in high energy physics also was addressed. Finally, transverse energy distributions and inelasticity distributions, insofar as they impart information about thermalization of the energy available for hadronization, was discussed. These issues are of relevance for the current searches for Quark-Gluon-Plasma. The goal of the workshop is to provide a forum for the presentation of new experimental results.
This volume presents the experimental and theoretical methods of studying soft interaction physics in high energy collisions. The topics include: dynamical and Bose-Einstein correlations, multiplicity fluctuation, soft photons, disoriented chiral condensate, self-similarity and self-affine behaviors, wavelet analysis, intermittency, chaos, and phase transition.
The topics in this volume include: intermittency; correlations; QCD; phase transition; soft photons and Monte Carlo simulations of soft processes.
The fractal structure of multiplicity fluctuations ('intermittency') in high energy multiparticle production is discussed with experimental results from fixed target and collider experiments on e+e-, p, hadronic and nuclear collisions. Theoretical investigations concern the selfsimilar dynamics of particle cascades and quark-gluon-plasma as well as the structure of particle correlations