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This conference brought together the people working on 4π detectors to discuss what had been achieved, whether the results agreed, and to think about possible collaborations to measure the excitation function of several observables. It discussed the similarities and differences in the results obtained at low (100 MeV-1 GeV) and high (10 GeV-200 GeV) energies and outlined what the different fields could learn from each other, especially concerning correlations and particle production. It surveyed the success and also the insufficiency of the present theoretical approaches and discussed the direction in which they have to improve. Finally it gave an account of new developments in data analysis (wavelets, neural networks etc.).
Intensity interferometry, and Bose?Einstein Correlations in particular, at present constitutes the only experimental method for the determination of sizes and lifetimes of sources in particle and nuclear physics. The measurement of these is essential for an understanding of the dynamics of strong interactions which are responsible for the existence and properties of atomic nuclei. Bose?Einstein Correlations in Particle and Nuclear Physics is a collection of 47 previously published papers which have been chosen not only for their historical significance but for their important and so far lasting contribution to this subject. They appear in chronological order and are preceded by comments from the editor as to their importance and relevance to the field today. Bose?Einstein Correlations in Particle and Nuclear Physics is an invaluable and unique reference source for researchers, lecturers and graduate students at both universities and research institutes. Advance praise for this volume includes: ?This comprehensive reprint collection, compiled and introduced by Professor Richard Weiner, surveys both experimental and theoretical papers in the field of Bose?Einstein Correlations. The material included should prove invaluable to any worker or student entering the field. As noted by Professor Weiner, Bose?Einstein Correlations may be the most important step towards finding the "holy grail" of a quark-gluon plasma.? ? Professor Gerson Goldhaber, University of California, and Lawrence Berkeley National Laboratory, USA
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.