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J/[Psi] Suppression as a Signal for the Quark-gluon Plasma

J/[Psi] Suppression as a Signal for the Quark-gluon Plasma
Author:
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Total Pages: 12
Release: 1997
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ISBN:

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The authors review the search for the quark-gluon plasma using the signal of the suppression of J/[psi] production in high-energy heavy-ion collisions. Recent anomalous J/[psi] suppression in high-energy Pb-Pb collisions observed by the NA50 Collaboration are examined and compared with earlier results from pA and nucleus-nucleus collisions with heavy ions of smaller mass numbers. The anomalous suppression of J/[psi] production in Pb-Pb collisions can be explained as due to the occurrence of a new phase of strong J/[psi] absorption, which sets in when the number of nucleon-nucleon collisions at a spatial point exceeds about 4 and corresponds to a local energy density of about 3.4 GeV/fm3.


J/[Psi] Suppression as an Evidence for Quark Gluon Matter

J/[Psi] Suppression as an Evidence for Quark Gluon Matter
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Total Pages:
Release: 2001
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ISBN:

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The J/[psi] suppression was originally proposed as a signature of the quark-gluon plasma. Strong suppression of J/[psi] production was indeed observed recently by the NA50 Collaboration at CERN SPS. Is it the first signature of a long-awaited quark-gluon matter, or just a peculiar combination of ''conventional'' effects acting together to produce the puzzling pattern observed experimentally? In this lecture, I am trying to summarize the existing theoretical explanations.


THEORETICAL ISSUES IN J/PSI SUPPRESSION.

THEORETICAL ISSUES IN J/PSI SUPPRESSION.
Author: D. KHARZEEV
Publisher:
Total Pages:
Release: 2006
Genre:
ISBN:

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Two decades ago Matsui and Satz suggested that Debye screening in the quark-gluon plasma would result in J/{psi} suppression in heavy ion collisions. Much has happened in the subsequent years, and the picture of quark-gluon plasma at present is rapidly evolving - what does it imply for the J/{psi} suppression? What are the recent RHIC and SPS results trying to tell us? What else has to be done? This talk is an attempt to address these questions.


J/psi Production and Absorption in P + A and D+Au Collisions

J/psi Production and Absorption in P + A and D+Au Collisions
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Total Pages: 6
Release: 2010
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ISBN:

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The level of 'anomalous' charmonium suppression in high-energy heavy-ion collisions and its interpretation as a signal of quark-gluon plasma formation requires a robust understanding of charmonium production and absorption in proton-nucleus collisions. In a previous study we have shown that, contrary to common belief, the so-called J/[psi] 'absorption cross section', [sigma]{sub abs}{sup J/[psi]}, is not a 'universal constant' but, rather, an effective parameter that depends very significantly on the charmonium rapidity and on the collision energy. Here we present ugraded Glauber calculations with the EPS09 parameterization of nuclear modifications of the parton densities. We confirm that the effective 'absorption cross section' depends on the J/{psi} kinematics and the collision energy. We also make further steps towards understanding the physics of the mechanisms behind the observed 'cold nuclear matter' effects.


J/psi Production in Quark-Gluon Plasma

J/psi Production in Quark-Gluon Plasma
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Total Pages:
Release: 2006
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ISBN:

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We study J/[psi] production at RHIC and LHC energies with both initial production and regeneration. We solve the coupled set of transport equation for the J/[psi] distribution in phase space and the hydrodynamic equation for evolution of quark-gluon plasma. At RHIC, continuous regeneration is crucial for the J/[psi] momentum distribution while the elliptic flow is still dominated by initial production. At LHC energy, almost all the initially created J/[psi]s are dissociated in the medium and regeneration dominates the J/[psi] properties.


What Causes Psi Suppression in Pb + Pb Collisions?

What Causes Psi Suppression in Pb + Pb Collisions?
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Release: 1998
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A reexamination of hadronic comover scattering indicates that this mechanism cannot explain the observed [psi] suppression in Pb+Pb interactions. The possibility of quark-gluon plasma formation is therefore considered. Implications for RHIC and LHC are also discussed. The agreement of the NA50 Pb+Pb data with naive comover models is reassessed. Previous work is reanalyzed and expanded to include feeding of the [psi]' and [chi]{sub c} states to the [psi]. The effect of color screening is also investigated. Only the [psi]/Drell-Yan (DY) ratios are discussed here.