Non-flow correlations and elliptic flow fluctuations in Au+Au collisions at √sNN=200 GeV

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Abstract

This article presents results on event-by-event elliptic flow fluctuations in Au+Au collisions at √sNN= 200 GeV, where the contribution from non-flow correlations has been subtracted. An analysis method is introduced to measure non-flow correlations, relying on the assumption that non-flow correlations are most prominent at short ranges (|Δη|<2). Assuming that non-flow correlations are of the order that is observed in p+p collisions for long-range correlations (|Δη|>2), relative elliptic flow fluctuations of approximately 30-40% are observed. These results are consistent with predictions based on spatial fluctuations of the participating nucleons in the initial nuclear overlap region. It is found that the long-range non-flow correlations in Au+Au collisions would have to be more than an order of magnitude stronger compared to the p+p data to lead to the observed azimuthal anisotropy fluctuations with no intrinsic elliptic flow fluctuations. © 2010 The American Physical Society.

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APA

Alver, B., Back, B. B., Baker, M. D., Ballintijn, M., Barton, D. S., Betts, R. R., … Wysłouch, B. (2010). Non-flow correlations and elliptic flow fluctuations in Au+Au collisions at √sNN=200 GeV. Physical Review C - Nuclear Physics, 81(3). https://doi.org/10.1103/PhysRevC.81.034915

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