This book describes the underlying ideas and modern developments of Regge theory, confronting the theory with a huge variety of experimental data. Covering forty years of research, it provides a unique insight into the theory and its phenomenological development. Essential reading for particle physicists.
The volume presents an up-to-date survey of spin physics at the very high energies of present and future colliders. Topics discussed include the theory of high-energy spin physics, deep-inelastic scattering, polarization experiments at colliders, the production of high-energy polarized electron and proton beams, the construction of intense polarized sources and high-energy polarimeters. It will represent a significant reference in the field and an informative text for non-specialists as well, with rather complete keynote overview reports by some physicists who have contributed most to the subject. In addition, it will document the character of frontier research symposium of the Conference, with specialized reports of leading experts in the various items of the field.
The 28th conference from the Rochester series was the major high energy physics conference in 1996. Volume one contains short reports on new theoretical and experimental results. Volume two consists of the review talks presented in the plenary sessions.
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
A comprehensive and up-to-date overview of soft and hard diffraction processes in strong interaction physics. The first part covers soft hadron—hadron scattering in a complete and mature presentation. It can be used as a textbook in particle physics classes. Chapters 8-11 address graduate students as well as researchers, covering the "new diffraction": the pomeron in QCD, low-x physics, diffractive deep inelastic scattering and related processes.
This is an updated version of the book published in 1985. QCD-motivated, it gives a detailed description of hadron structure and soft interactions in the additive quark model, where hadrons are regarded as composite systems of dressed quarks.In the past decade it has become clear that nonperturbative QCD, responsible for soft hadronic processes, may differ rather drastically from perturbative QCD. The understanding of nonperturbative QCD requires a detailed investigation of the experiments and the theoretical approaches. Bearing this in mind, the book has been rewritten paying special attention to the interplay of soft hadronic collisions and the quark model. It is at the crossroads of these domains that peculiar features of strong QCD reveal themselves.The book discusses constituent quarks, diquarks, the massive effective gluons and the problem of scalar isoscalar mesons. The quark-gluonium classification of meson states is also given. Experimentally observed properties of hadrons are presented together with the corresponding theoretical interpretation in the framework of the composite hadron structure.The text includes a large theoretical part, which shows how to treat composite systems (including relativistic ones) with a technique based on spectral integration. This technique provides the possibility of handling hadrons as weakly bound systems of quarks and, at the same time, takes into account confinement.Attention is focused on the composite structure revealing itself in high energy hadron collisions. Fields of applicability of the additive quark model are discussed, as is colour screening in hadronic collisions at high and superhigh energies. Along with a detailed presentation of hadron-hadron collisions, a description of hadron-nucleus collisions is given.
Multiparticle dynamics is tightly connected with the fundamental properties of the QCD vacuum. This was reflected in the Scientific Programme of the XXVIII International Symposium on Multiparticle Dynamics. Emphasis was given during the sessions to the collective phenomena at high energies, including: fluctuations and correlations, quark-gluon plasma, QCD phase transitions (fractals, intermittency, wavelets), the QCD structure of the Pomeron, and new aspects of multiplicity distributions.