Measurement Of The Centrality Dependence Of The Charged Particle Pseudorapidity Distribution In Protonu2013lead Collisions At Sqrts Text Nn PDF Download

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Measurement of the Centrality Dependence of the Charged-particle Pseudorapidity Distribution in Proton{u2013}lead Collisions at $\sqrt{s_{_\text {NN}}}

Measurement of the Centrality Dependence of the Charged-particle Pseudorapidity Distribution in Proton{u2013}lead Collisions at $\sqrt{s_{_\text {NN}}}
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Release: 2016
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The centrality dependence of the mean charged-particle multiplicity as a function of pseudorapidity is measured in approximately 1 ?b-1 of proton–lead collisions at a nucleon–nucleon centre-of-mass energy of $sqrt{s_{_ ext {NN}}} = 5.02$ TeV using the ATLAS detector at the Large Hadron Collider. Charged particles with absolute pseudorapidity less than 2.7 are reconstructed using the ATLAS pixel detector. The ? + ?b collision centrality is characterised by the total transverse energy measured in the Pb-going direction of the forward calorimeter. The charged-particle pseudorapidity distributions are found to vary strongly with centrality, with an increasing asymmetry between the proton-going and Pb-going directions as the collisions become more central. Three different estimations of the number of nucleons participating in the ? + ?b collision have been carried out using the Glauber model as well as two Glauber–Gribov inspired extensions to the Glauber model. In conclusion, charged-particle multiplicities per participant pair are found to vary differently for these three models, highlighting the importance of including colour fluctuations in nucleon–nucleon collisions in the modelling of the initial state of ? + ?b collisions.


Centrality Evolution of the Charged-particle Pseudorapidity Density Over a Broad Pseudorapidity Range in Pb-Pb Collisions at [mml

Centrality Evolution of the Charged-particle Pseudorapidity Density Over a Broad Pseudorapidity Range in Pb-Pb Collisions at [mml
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Total Pages: 13
Release: 2016
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The centrality dependence of the charged-particle pseudorapidity density measured with ALICE in Pb-Pb collisions at √sNN = 2.76 TeV over a broad pseudorapidity range is presented. This Letter extends the previous results reported by ALICE to more peripheral collisions. No strong change of the overall shape of charged-particle pseudorapidity density distributions with centrality is observed, and when normalised to the number of participating nucleons in the collisions, the evolution over pseudorapidity with centrality is likewise small. Broadening the pseudorapidity range (-3.5


Pseudorapidity Asymmetry and Centrality Dependence of Charged Hadron Spectra in D+Au Collisions at Sqrt(sNN)

Pseudorapidity Asymmetry and Centrality Dependence of Charged Hadron Spectra in D+Au Collisions at Sqrt(sNN)
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Release: 2005
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The pseudorapidity asymmetry and centrality dependence of charged hadron spectra in d+Au collisions at (square root)s{sub NN} = 200 GeV are presented. The charged particle density at mid-rapidity, its pseudorapidity asymmetry and centrality dependence are reasonably reproduced by a Multi-Phase Transport model, by HIJING, and by the latest calculations in a saturation model. Ratios of transverse momentum spectra between backward and forward pseudorapidity are above unity for p{sub T} below 5 GeV/c. The ratio of central to peripheral spectra in d+Au collisions shows enhancement at 2


Centrality Dependence of Particle Production in [math][mi]p[/mi][mo]-[/mo][mi]Pb[/mi][/math] Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant

Centrality Dependence of Particle Production in [math][mi]p[/mi][mo]-[/mo][mi]Pb[/mi][/math] Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant
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Release: 2015
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Download Centrality Dependence of Particle Production in [math][mi]p[/mi][mo]-[/mo][mi]Pb[/mi][/math] Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant Book in PDF, ePub and Kindle

Here, we report measurements of the primary charged-particle pseudorapidity density and transverse momentum distributions in p-Pb collisions at √sNN = 5.02TeV and investigate their correlation with experimental observables sensitive to the centrality of the collision. Centrality classes are defined by using different event-activity estimators, i.e., charged-particle multiplicities measured in three different pseudorapidity regions as well as the energy measured at beam rapidity (zero degree). The procedures to determine the centrality, quantified by the number of participants (Npart) or the number of nucleon-nucleon binary collisions (Ncoll) are described. We show that, in contrast to Pb-Pb collisions, in p-Pb collisions large multiplicity fluctuations together with the small range of participants available generate a dynamical bias in centrality classes based on particle multiplicity. We propose to use the zero-degree energy, which we expect not to introduce a dynamical bias, as an alternative event-centrality estimator. Based on zero-degree energy-centrality classes, the Npart dependence of particle production is studied. Under the assumption that the multiplicity measured in the Pb-going rapidity region scales with the number of Pb participants, an approximate independence of the multiplicity per participating nucleon measured at mid-rapidity of the number of participating nucleons is observed. Furthermore, at high-pT the p-Pb spectra are found to be consistent with the pp spectra scaled by Ncoll for all centrality classes. Our results represent valuable input for the study of the event-activity dependence of hard probes in p-Pb collisions and, hence, help to establish baselines for the interpretation of the Pb-Pb data.


Energy and Centrality Dependence of Mid-rapidity Charged Particle Multiplicity in Relativistic Heavy-ion Collisions

Energy and Centrality Dependence of Mid-rapidity Charged Particle Multiplicity in Relativistic Heavy-ion Collisions
Author: Michał Patrick Decowski
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Total Pages: 200
Release: 2002
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ISBN:

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The properties of quantum chromodynamics (QCD), the modern theory of the strong interaction, can be investigated through the study of relativistic nucleus-nucleus collisions. Recently, the Relativistic Heavy-Ion Collider (RHIC) was completed and started taking data at ten times higher center-of-mass energies than the previous most energetic heavy-ion collisions. This thesis presents some of the first measurements at RHIC from any experiment. The PHOBOS detector is used to measure the charged particle pseudo-rapidity density at mid-rapidity (i.e., in [eta]