Centrality And Collision System Dependence Of Antiproton Production From P A To Au Au Collisions At Ags Energies PDF Download

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Centrality and Collision System Dependence of Antiproton Production from P+A to Au+Au Collisions at AGS Energies

Centrality and Collision System Dependence of Antiproton Production from P+A to Au+Au Collisions at AGS Energies
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Total Pages: 6
Release: 1997
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Antiproton production in heavy ion collisions reflects subtle interplay between initial production and absorption by nucleons. Because the AGS energies (10--20 A·GeV/c) are close to the antiproton production threshold, antiproton may be sensitive to cooperative processes such as QGP and hadronic multi-step processes. On the other hand, antiproton has been proposed as a probe of baryon density due to large N{anti N} annihilation cross sections. Cascade models predict the maximum baryon density reaches about 10 times the normal nucleus density in central Au+Au collisions, where the strong antiproton absorption is expected. In this paper, the authors show systematic studies of antiproton production from p+A to Au+Au collisions.


Antiproton Production in 11.7 AGeV

Antiproton Production in 11.7 AGeV
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Total Pages: 9
Release: 1996
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We present antiproton production in 11.7 AGeV/c Au+Au collisions measured in a wide transverse-mass coverage from the AGS-E866 experiment. We show indications for strong absorption effects of antiprotons in Au+Au collisions through comparison with p+A and Si+A collisions, and centrality dependence in Au+Au collisions.


Intriguing Centrality Dependence of the Au-Au Source Size at the AGS.

Intriguing Centrality Dependence of the Au-Au Source Size at the AGS.
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Total Pages: 0
Release: 1996
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One of the main goals of high energy heavy ion physics is to establish the existence of a deconfined phase of nuclear matter--the quark-gluon plasma--at high temperatures or densities. One possible signature of such a phase transition, especially if it were first order, would be a larger source size or lifetime than a similar hadronic system. At current AGS energies, we attempt to form a quark- gluon plasma by achieving a high baryon density for a period of time in the center of the collision region. For a given density threshold, the size of this high density region should be a strong function of the impact parameter: the more central the event, the larger the high density region. Therefore, one possible signature of a quark-gluon plasma would be a sudden change in system lifetime or size as a function of the centrality of the collision. In this talk we present an intriguing effect which was not predicted for simple hadronic systems: a rapid increase of the HBT-measured source radius parameter for pion pairs with increasing centrality for Au-Au collisions at a beam momentum of 11.45 A GeV/c on a fixed target. Experience has shown, however, that we must be cautious in our interpretation. A complete understanding of the collision dynamics at a given energy must be built up from several measurements and new, but conventional, hadronic explanations must be considered for such unexpected effects. More study is needed, therefore, before any strong conclusions can be reached.


Chemical Abstracts

Chemical Abstracts
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Total Pages: 2352
Release: 2002
Genre: Chemistry
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Antiproton Production at 0 Degrees for Si + A and Au + A Collisions at the AGS.

Antiproton Production at 0 Degrees for Si + A and Au + A Collisions at the AGS.
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Total Pages: 10
Release: 1994
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We present results on antiproton production obtained in the AGS experiments E858 and preliminary results of E878. The yields of antiprotons in Si + A collisions are shown to sale with number of first collisions. The rapidity distributions for all targets (Au, Cu and Al) and both beams (si at 14.6 GeV/c and A at 11. GeV/c) have gaussian shapes peaking at y{sub NN} and with similar standard deviations. From E878 we report a difference in the shape of the antiproton rapidity distributions obtained from two samples of the data populated with central and peripheral events respectively. In A induced reactions the A dependence of the antiproton yields is small.


Centrality Dependent Strange Baryon Production in P-A and Its Implications for Heavy Ion Collisions

Centrality Dependent Strange Baryon Production in P-A and Its Implications for Heavy Ion Collisions
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Release: 2000
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BNL E910 has measured strange baryon production as a function of collision centrality for 17.5 GeV/c p-Au collisions. Collision centrality is defined by v1 the mean number projectile-nucleon interactions estimated from the ''grey'' track multiplicity. The measured [Lambda] yield increases faster than the participant scaling expectation for v ≤ 3 and then saturates. A simple parameterization of this dependence applied to nucleus-nucleus collisions reproduces the measured E866 km. and WA97 [Lambda] centrality dependent yields. The increase in [Lambda] production to v ≤ 3 is also evident for [Lambda]s which are leading baryons, in disagreement with predictions from RQMD.


Rapidity and Centrality Dependence of Proton and Anti-proton Production from 197Au+197Au Collisions at √(s{sub NN})

Rapidity and Centrality Dependence of Proton and Anti-proton Production from 197Au+197Au Collisions at √(s{sub NN})
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Total Pages: 8
Release: 2003
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We report on the rapidity and centrality dependence of proton and anti-proton transverse mass distributions from 197Au + 197Au collisions at √s{sub NN} = 130 GeV as measured by the STAR experiment at RHIC. Our results are from the rapidity and transverse momentum range of.


Centrality, Rapidity And Transverse-Momentum Dependence of Cold Nuclear Matter Effects on J/Psi Production in D Au, Cu Cu And Au Au Collisions at S(NN)**ư

Centrality, Rapidity And Transverse-Momentum Dependence of Cold Nuclear Matter Effects on J/Psi Production in D Au, Cu Cu And Au Au Collisions at S(NN)**ư
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Total Pages: 11
Release: 2011
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We have carried out a wide study of Cold Nuclear Matter (CNM) effects on J/? = production in dAu, CuCu and AuAu collisions at √s{sub NN} = 200 GeV. We have studied the effects of three different gluon-shadowing parameterizations, using the usual simplified kinematics for which the momentum of the gluon recoiling against the J/? is neglected as well as an exact kinematics for a 2 → 2 process, namely g + g → J/? + g as expected from LO pQCD. We have shown that the rapidity distribution of the nuclear modification factor R{sub dAu}, and particularly its anti-shadowing peak, is systematically shifted toward larger rapidities in the 2 → 2 kinematics, irrespective of which shadowing parameterization is used. In turn, we have noted differences in the effective final-state nuclear absorption needed to fit the PHENIX dAu data. Taking advantage of our implementation of a 2 → 2 kinematics, we have also computed the transverse momentum dependence of the nuclear modification factor, which cannot be predicted with the usual simplified kinematics. All the corresponding observables have been computed for CuCu and AuAu collisions and compared to the PHENIX and STAR data. Finally, we have extracted the effective nuclear absorption from the recent measurements of RCP in dAu collisions by the PHENIX collaboration.