MACH CONES AND HYDRODYNAMIC FLOW: PROBING BIG BANG MATTER IN THE LABORATORY

Author:

BETZ BARBARA12,RAU PHILIP1,STÖCKER HORST13

Affiliation:

1. Institut für Theoretische Physik, Johann Wolfgang Goethe – Universität, Max-von-Laue Str. 1, 60438 Frankfurt, Germany

2. Helmholtz Graduate School, GSI, FIAS and Universität Frankfurt, Germany

3. FIAS - Frankfurt Institute for Advanced Studies, Max-von-Laue Str. 1, 60438 Frankfurt, Germany

Abstract

A critical discussion of the present signals for the phase transition to quark-gluon plasma (QGP) is given. Since hadronic rescattering models predict much larger flow than observed from 1 to 50 A GeV laboratory bombarding energies, this observation is interpreted as potential evidence for a first-order phase transition at high baryon density. A detailed discussion of the collective flow as a barometer for the equation of state (EoS) of hot dense matter at RHIC follows. Here, hadronic rescattering models can explain < 30% of the observed elliptic flow v2 for pT > 2 GeV / c . This is interpreted as an evidence for the production of superdense matter at RHIC. The connection of v2 to jet suppression is examined. A study of Mach shocks generated by fast partonic jets propagating through the QGP is given. The main goal is to take into account different types of collective motion during the formation and evolution of this matter. A significant deformation of Mach shocks in central Au + Au collisions at RHIC and LHC energies as compared to the case of jet propagation in a static medium is predicted. A new hydrodynamical study of jet energy loss is presented.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Nuclear and High Energy Physics

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Sound edge of the quenching jets;Physical Review C;2013-11-22

2. Nonlinear waves in a quark gluon plasma;Physical Review C;2010-05-25

3. Breaking waves in a quark gluon plasma;Nuclear Physics B - Proceedings Supplements;2010-02

4. Physics of collisions between ultrarelativistic nuclei: Manifestation of collective effects;Physics of Atomic Nuclei;2009-11

5. Sound waves and solitons in hot and dense nuclear matter;Nuclear Physics A;2009-03

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