3 research outputs found

    STAR Collaboration

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    Measurement of elliptic flow of light nuclei at sNN\sqrt{s_{NN}} = 200, 62.4, 39, 27, 19.6, 11.5, and 7.7 GeV at RHIC

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    We present measurements of 2nd^{nd} order azimuthal anisotropy (v2v_{2}) at mid-rapidity (y<1.0)(|y|<1.0) for light nuclei d, t, 3^{3}He (for sNN\sqrt{s_{NN}} = 200, 62.4, 39, 27, 19.6, 11.5, and 7.7 GeV) and anti-nuclei dˉ\bar{\rm d} (sNN\sqrt{s_{NN}} = 200, 62.4, 39, 27, and 19.6 GeV) and 3Heˉ^{3}\bar{\rm He} (sNN\sqrt{s_{NN}} = 200 GeV) in the STAR (Solenoidal Tracker at RHIC) experiment. The v2v_{2} for these light nuclei produced in heavy-ion collisions is compared with those for p and pˉ\bar{\rm p}. We observe mass ordering in nuclei v2(pT)v_{2}(p_{T}) at low transverse momenta (pT<2.0p_{T}<2.0 GeV/cc). We also find a centrality dependence of v2v_{2} for d and dˉ\bar{\rm d}. The magnitude of v2v_{2} for t and 3^{3}He agree within statistical errors. Light-nuclei v2v_{2} are compared with predictions from a blast wave model. Atomic mass number (AA) scaling of light-nuclei v2(pT)v_{2}(p_{T}) seems to hold for pT/A<1.5p_{T}/A < 1.5 GeV/cc. Results on light-nuclei v2v_{2} from a transport-plus-coalescence model are consistent with the experimental measurements

    Improved measurement of the longitudinal spin transfer to ΛΛ and Λˉ\bar Λ hyperons in polarized proton-proton collisions at s\sqrt s = 200 GeV

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    The longitudinal spin transfer DLLD_{LL} to Λ\Lambda and Λˉ\bar{\Lambda} hyperons produced in high-energy polarized proton--proton collisions is expected to be sensitive to the helicity distribution functions of strange quarks and anti-quarks of the proton, and to longitudinally polarized fragmentation functions. We report an improved measurement of DLLD_{LL} from data obtained at a center-of-mass energy of s\sqrt{s} = 200 GeV with the STAR detector at RHIC. The data have an approximately twelve times larger figure-of-merit than prior results and cover η<|\eta|< 1.2 in pseudo-rapidity with transverse momenta pTp_T up to 6 GeV/c. In the forward scattering hemisphere at largest pTp_T, the longitudinal spin transfer is found to be DLLD_{LL} = -0.036 ±\pm 0.048 (stat) ±\pm 0.013(sys) for Λ\Lambda hyperons and DLLD_{LL} = 0.032 ±\pm 0.043\,(stat) ±\pm 0.013\,(sys) for Λˉ\bar{\Lambda} anti-hyperons. The dependences on η\eta and pTp_T are presented and compared with model evaluations
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