Relativistic Heavy Ion Physics

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534,99 

Landolt-Börnstein: Numerical Data and Functional Relationships in Science and Technology – New Series 23 – Elementary Particles, Nuclei and Atoms

ISBN: 3642015387
ISBN 13: 9783642015380
Herausgeber: Reinhard Stock
Verlag: Springer Verlag GmbH
Umfang: xviii, 688 S., 454 s/w Illustr., 688 p. 454 illus.
Erscheinungsdatum: 01.04.2010
Auflage: 1/2010
Produktform: Gebunden/Hardback
Einband: GEB

Standard reference book with selected and easily retrievable data from the fields of physics and chemistry collected by acknowledged international scientistsAlso available online in www.springerLink.com http://www.landolt-boernstein.com

Artikelnummer: 5027204 Kategorie:

Beschreibung

This new volume, I/23, of the Landolt-Börnstein Data Collection series continues a tradition inaugurated by the late Editor-in-Chief, Professor Werner Martienssen, to provide in the style of an encyclopedia a summary of the results and ideas of Relativistic Heavy Ion Physics. Formerly, the Landolt-Börnstein series was mostly known as a compilation of numerical data and functional relations, but it was felt that the more comprehensive summary undertaken here should meet an urgent purpose. Volume I/23 reports on the present state of theoretical and experimental knowledge in the field of Relativistic Heavy Ion Physics. What is meant by this rather technical terminology is the study of strongly interacting matter, and its phases (in short QCD matter) by means of nucleus-nucleus collisions at relativistic energy. The past decade has seen a dramatic progress, and widening of scope in this field, which addresses one of the chief remaining open frontiers of Quantum Chromodynamics (QCD) and, in a wider sense, the "Standard Model of Elementary Interactions". The data resulting from the CERN SPS, BNL AGS and GSI SIS experiments, and in particular also from almost a decade of experiments carried out at the "Relativistic Heavy Ion Collider"(RHIC) at Brookhaven, have been fully analyzed, uncovering a wealth of information about both the confined and deconfined phases of QCD at high energy density.

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