488 research outputs found

    Heavy-flavor observables at RHIC and LHC

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    We investigate the charm-quark propagation in the QGP media produced in ultrarelativistic heavy-ion collisions at RHIC and the LHC. Purely collisional and radiative processes lead to a significant suppression of final DD-meson spectra at high transverse momentum and a finite flow of heavy quarks inside the fluid dynamical evolution of the light partons. The DD-meson nuclear modification factor and the elliptic flow are studied at two collision energies. We further propose to measure the triangular flow of DD mesons, which we find to be nonzero in non-central collisions.Comment: Proceedings of the 24th Quark Matter conference, 19-24 May 2014, Darmstadt, Germany. 4 p

    Gluons and the eta' nucleon coupling constant

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    We derive the effective chiral Lagrangian for low energy eta--nucleon and eta'--nucleon interactions and show that gluonic degrees of freedom, via the axial anomaly, induce a contact term in the pp -> pp eta and pp -> pp eta' reactions. We then discuss the consequences for the extraction of g_{eta'NN} from experimental data.Comment: 10 pages, LaTe

    Effects of Unemployment on White and Negro Prison Admissions in Louisiana

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    Stogdill\u27s Handbook of Leadership: A Survey of Theory and Research

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    IBM Mark Sense Cards in Prison Classification and Criminological Research

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    Elliptic flow of resonances at RHIC: probing final state interactions and the structure of resonances

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    We propose the measurement of the elliptic flow of hadron resonances at the Relativistic Heavy Ion Collider as a tool to probe the amount of hadronic final state interactions for resonances at intermediate and large transverse momenta. This can be achieved by looking at systematic deviations of the measured flow coefficient v2v_2 from the scaling law given by the quark recombination formalism. Our method can be generalized to explore the structure of exotic particles, such as the recently found pentaquark Θ+(1540)\Theta^+ (1540).Comment: 5 pages, 2 figures; v2: accepted version for publication in Physical Review C rapid communication
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