Nuclear Matter and Heavy Ion Collisions

Nuclear Matter and Heavy Ion Collisions

Author: Madeleine Soyeur

Publisher: Springer

Published: 2012-03-07

Total Pages: 511

ISBN-13: 9781468457179

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The Winter School "Nuclear Matter and Heavy Ion Collisions", a NATO Research Workshop held at Les Houches in February 89, has been devoted to recent developments in nuclear matter theory and to the study of central heavy ion collisions in which quasi macroscopic nuclear systems can be formed at various temperatures and densities. At in cident energies below 100 Me V per nucleon, the kinematic conditions are favourable for producing transient hot nuclei with temperatures of the order of a few MeV. At higher ener gies (100 MeV


Heavy Ion Collisions

Heavy Ion Collisions

Author: Paul Bonche

Publisher: Springer Science & Business Media

Published: 2013-03-08

Total Pages: 408

ISBN-13: 1468450158

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The 1984 Cargese Advanced Study Institute was devoted to the study of nuclear heavy ion collisions at medium and ultrarelativis tic energies. The origin of this meeting goes back to 1982 when the organizers met at the GANIL laboratory in Caen, France which had just started accelerating argon ions at 44 MeV per nucleon. We then realized that 1984 should be the appropriate time to review the first results obtained with such new kinds of facilities. The material contained in this volume, presenting many beautiful re sults on nuclei at high excitation, fully confirms this point. Many stimulating exchanges between experts in rather diffe rent fields already took place during the school and we hope that this cross fertilization will lead to further developments. About half of the present volume is also devoted to the field of relativistic heavy ion collisions, which is now expanding rapidly. As an illustration, let us recall that the construction of a 30 on 30 GeV per nucleon collider at Brookhaven has been recognized last year as one cf the major priorities by the US Nuclear Science Advisory Committee. We would like to express our gratitude to NATO for its ge nerous financial support which made this institute possible. We also wish to thank the Institut de Physique Nucleaire et de Physique des Particules (France), the Commissariat a l'energie atomique (France) and The National Science Foundation (USA) for the attribution of travel grants.


Exotic States Of Nuclear Matter - Proceedings Of The International Symposium Exoct07

Exotic States Of Nuclear Matter - Proceedings Of The International Symposium Exoct07

Author: Marcello Baldo

Publisher: World Scientific

Published: 2008-02-25

Total Pages: 471

ISBN-13: 9814471496

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The International Symposium on “Exotic States of Nuclear Matter” was a unique opportunity to review and discuss the many aspects of nuclear matter under extreme conditions and the corresponding possible exotic states like hyperonic matter, kaon condensates, and quark matter, which can appear both in astrophysical compact objects like neutron stars and in heavy ion collision experiments. In this proceedings volume, leading experts from astrophysics, nuclear physics, and elementary particle physics have delivered reviews and specialized seminars, which highlight the links among the different fields and the role of the underlying fundamental processes. Prospects in future astrophysical observations, with present and planned apparata, and heavy ion experiments are strongly emphasized. Thus, this book will definitely be a valuable reference for all researchers working in this wide research area.


JETS OF NUCLEAR MATTER FROM HIGH ENERGY HEAVY ION COLLISIONS.

JETS OF NUCLEAR MATTER FROM HIGH ENERGY HEAVY ION COLLISIONS.

Author:

Publisher:

Published: 1981

Total Pages: 15

ISBN-13:

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The nuclear fluid dynamical model with final thermal breakup is used to study the reactions 2°Ne + 238U and 4°Ar + 4°Ca at E{sub LAB} = 390 MeV/n. The calculated double differential cross sections d2?/d?dE are in agreement with recent experimental data. However, it is shown that the azimuthal dependence of the triple differential distributions d3?/dEdcos?d?, to be obtained from 4? exclusive experiments with single event analysis, can yield considerably deeper insight into the collision process and allow for snapshots of the reactions. Strongly correlated jets of nuclear matter are predicted.