Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at {u221A}sNN

Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at {u221A}sNN
Title Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at {u221A}sNN PDF eBook
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Release 2015
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We have studied the dependence of azimuthal anisotropy v2 for inclusive and identified charged hadrons in Au+Au and Cu+Cu collisions on collision energy, species, and centrality. The values of v2 as a function of transverse momentum pT and centrality in Au+Au collisions at √sNN=200 and 62.4 GeV are the same within uncertainties. However, in Cu+Cu collisions we observe a decrease in v2 values as the collision energy is reduced from 200 to 62.4 GeV. The decrease is larger in the more peripheral collisions. By examining both Au+Au and Cu+Cu collisions we find that v2 depends both on eccentricity and the number of participants, Npart. We observe that v2 divided by eccentricity (?) monotonically increases with Npart and scales as N1/3part. Thus, the Cu+Cu data at 62.4 GeV falls below the other scaled v2 data. For identified hadrons, v2 divided by the number of constituent quarks nq is independent of hadron species as a function of transverse kinetic energy KET=mT–m between 0.1KEsubT/sub/nsubq/sub1 GeV. Combining all of the above scaling and normalizations, we observe a near-universal scaling, with the exception of the Cu+Cu data at 62.4 GeV, of vsub2/sub/(nsubq/sub∙????????Nsup1/3/supsubpart/sub) vs KEsubT/sub/n

Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at SNN

Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at SNN
Title Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at SNN PDF eBook
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Release 2015
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In this paper, we have studied the dependence of azimuthal anisotropy v2 for inclusive and identified charged hadrons in Au+Au and Cu+Cu collisions on collision energy, species, and centrality. The values of v2 as a function of transverse momentum pT and centrality in Au+Au collisions at √sNN=200 and 62.4 GeV are the same within uncertainties. However, in Cu+Cu collisions we observe a decrease in v2 values as the collision energy is reduced from 200 to 62.4 GeV. The decrease is larger in the more peripheral collisions. By examining both Au+Au and Cu+Cu collisions we find that v2 depends both on eccentricity and the number of participants, Npart. We observe that v2 divided by eccentricity (?) monotonically increases with Npart and scales as N1/3part. Thus, the Cu+Cu data at 62.4 GeV falls below the other scaled v2 data. For identified hadrons, v2 divided by the number of constituent quarks nq is independent of hadron species as a function of transverse kinetic energy KET=mT–m between 0.1KEsubT/sub/nsubq/sub1 GeV. Finally, combining all of the above scaling and normalizations, we observe a near-universal scaling, with the exception of the Cu+Cu data at 62.4 GeV, of vsub2/sub/(nsubq/sub∙????????Nsup1/3/supsubpart/sub) vs KEsubT/sub/n

Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant

Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant
Title Systematic Study of Azimuthal Anisotropy in Cu + Cu and Au + Au Collisions at [math][mrow][msqrt][msub][mi][/mi][mi Mathvariant PDF eBook
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Pages
Release 2015
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ISBN

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Azimuthal Anisotropy of Φ Meson in U+U and Au+Au Collisions at RHIC.

Azimuthal Anisotropy of Φ Meson in U+U and Au+Au Collisions at RHIC.
Title Azimuthal Anisotropy of Φ Meson in U+U and Au+Au Collisions at RHIC. PDF eBook
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Pages
Release 2016
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ISBN

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Azimuthal Anisotropy in U+U Collisions at STAR.

Azimuthal Anisotropy in U+U Collisions at STAR.
Title Azimuthal Anisotropy in U+U Collisions at STAR. PDF eBook
Author
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Pages 5
Release 2014
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ISBN

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The azimuthal anisotropy of particle production is commonly used in high-energy nuclear collisions to study the early evolution of the expanding system. The prolate shape of uranium nuclei makes it possible to study how the geometry of the colliding nuclei affects final state anisotropies. It also provides a unique opportunity to understand how entropy is produced in heavy ion collisions. In this paper, the two- and four- particle cumulant v2 (v2{2} and v2{4}) from U+U collisions at √sNN = 193 GeV and Au+Au collisions at √sNN = 200 GeV for inclusive charged hadrons will be presented. The STAR Zero Degree Calorimeters are used to select very central collisions. Differences were observed between the multiplicity dependence of v2{2} for most central Au+Au and U+U collisions. The multiplicity dependence of v2{2} in central collisions were compared to Monte Carlo Glauber model predictions and it was seen that this model cannot explain the present results. (auth).

Azimuthal Anisotropy in Au+Au Collisions at (square Root)s{sub NN}

Azimuthal Anisotropy in Au+Au Collisions at (square Root)s{sub NN}
Title Azimuthal Anisotropy in Au+Au Collisions at (square Root)s{sub NN} PDF eBook
Author
Publisher
Pages 23
Release 2004
Genre
ISBN

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The results from the STAR Collaboration on directed flow (v1), elliptic flow (v2), and the fourth harmonic (v4) in the anisotropic azimuthal distribution of particles from Au+Au collisions at (square root)s{sub NN} = 200 GeV are summarized and compared with results from other experiments and theoretical models. Results for identified particles are presented and fit with a Blast Wave model. For v2, scaling with the number of constituent quarks and parton coalescence is discussed. For v4, scaling with v22 and quark coalescence predictions for higher harmonic flow is discussed. The different anisotropic flow analysis methods are compared and nonflow effects are extracted from the data. For v2, scaling with the number of constituent quarks and parton coalescence are discussed. For v22 and quark coalescence are discussed.

Measurement of Charmed Meson Azimuthal Anisotropy in Au+Au Collisions at a Center of Mass Energy of 200 GeV Per Nucleon Pair at RHIC

Measurement of Charmed Meson Azimuthal Anisotropy in Au+Au Collisions at a Center of Mass Energy of 200 GeV Per Nucleon Pair at RHIC
Title Measurement of Charmed Meson Azimuthal Anisotropy in Au+Au Collisions at a Center of Mass Energy of 200 GeV Per Nucleon Pair at RHIC PDF eBook
Author Michael Richard Lomnitz
Publisher
Pages 189
Release 2016
Genre Heavy ion collisions
ISBN

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