This book covers various experimental and theoretical aspects of multiparticle production in high energy interactions from lepton-lepton, lepton-hadron, hadron-hadron, hadron-nucleus and heavy ion collisons. This is the first time that data from CERN LEP, FNAL, DESY, BNL AGS, CERN SPS and BNL RHIC have been collected in a single volume. Not only accelerator-induced reactions but also cosmic ray interactions of very high energy are discussed, and the up-to-date theoretical interpretations are summarized.
Nuclear and particle physicists are searching for evidence of a new state of elementary matter with the constituents of nucleons and quarks, roaming freely in a deconfined state known as the quark-gluon plasma. To create the required conditions for this new phase to occur in the laboratory, relativistic heavy ion experimental facilities have been developed where heavy nuclei can collide at highly relativistic energies. Such collisions have the potential to provide, albeit for a very short time duration, the high energy density and temperature within an extended elementary volume, allowing the formation of this new phase. This text, co-authored by many experts, provides an elementary introduction and also surveys current experimental accomplishments. Many students participated in the write up of the lectures which are thus at an accessible level. An introduction to the research program in Latin America is offered in the spirit of the Pan-American Advanced Study Institute.
Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.
Papers of the June 1989 meeting in Beijing by the China Center of Advanced Science and Technology. This small book covers nucleus- nucleus collisions, states of the vacuum, and highly relativistic heavy ions in the experimental realm. Theoretical papers deal with quark-gluon plasma, and relativistic heavy ion collisions. Annotation copyrighted by Book News, Inc., Portland, OR