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Rachid Nouicer

Researcher at University of Illinois at Chicago

Publications -  66
Citations -  4264

Rachid Nouicer is an academic researcher from University of Illinois at Chicago. The author has contributed to research in topics: Pseudorapidity & Charged particle. The author has an hindex of 22, co-authored 66 publications receiving 4071 citations. Previous affiliations of Rachid Nouicer include Brookhaven National Laboratory.

Papers
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The PHOBOS Perspective on Discoveries at RHIC

TL;DR: In the most central Au+Au collisions at the highest beam energy, evidence is found for the formation of a very high energy density system whose description in terms of simple hadronic degrees of freedom is inappropriate as discussed by the authors.
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Significance of the fragmentation region in ultrarelativistic heavy-ion collisions

TL;DR: The universal fragmentation region described by this scaling grows in pseudorapidity with increasing collision energy, extending well away from the beam rapidity and covering more than half of the pseudorAPidity range over which particles are produced.
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Phobos results on charged particle multiplicity and pseudorapidity distributions in Au+Au, Cu+Cu, d+Au, and p+p collisions at ultra-relativistic energies

TL;DR: In this paper, the centrality dependence of both the charged particle distributions and the multiplicity at mid-rapidity were measured using the PHOBOS detector at the BNL Relativistic Heavy-Ion Collider (RHIC).
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Centrality dependence of charged-hadron transverse-momentum spectra in d+Au collisions at sqrt[s(NN)]=200 GeV.

TL;DR: In this paper, the authors measured transverse momentum distributions of charged hadrons produced in d+Au collisions at sqrt[s(NN)]=200 GeV and obtained spectra for transverse momenta 0.25
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Charged particle multiplicity near mid-rapidity in central Au + Au collisions at $S^{(1/2)}$ = 56-A/GeV and 130-A/GeV

B. B. Back, +109 more
TL;DR: The first measurement of pseudorapidity densities of primary charged particles near midrapidity in Au+Au collisions at squarert[s(NN)] = 56 and 130 GeV was presented in this paper.