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A data-driven method was applied to measurements of Au+Au collisions at $sqrt{s_{_{rm NN}}} =$ 200 GeV made with the STAR detector at RHIC to isolate pseudorapidity distance $Deltaeta$-dependent and $Deltaeta$-independent correlations by using two- and four-particle azimuthal cumulant measurements. We identified a component of the correlation that is $Deltaeta$-independent, which is likely dominated by anisotropic flow and flow fluctuations. It was also found to be independent of $eta$ within the measured range of pseudorapidity $|eta|<1$. The relative flow fluctuation was found to be $34% pm 2% (stat.) pm 3% (sys.)$ for particles of transverse momentum $p_{T}$ less than $2$ GeV/$c$. The $Deltaeta$-dependent part may be attributed to nonflow correlations, and is found to be $5% pm 2% (sys.)$ relative to the flow of the measured second harmonic cumulant at $|Deltaeta| > 0.7$.
We present measurements of elliptic and triangular azimuthal anisotropy of charged particles detected at forward rapidity $1<|eta|<3$ in Au$+$Au collisions at $sqrt{s_{_{NN}}}=200$ GeV, as a function of centrality. The multiparticle cumulant techniqu
We present two-dimensional (2D) two-particle angular correlations on relative pseudorapidity $eta$ and azimuth $phi$ for charged particles from Au-Au collisions at $sqrt{s_{rm NN}} = 62$ and 200 GeV with transverse momentum $p_t geq 0.15$ GeV/$c$, $|
Yields, correlation shapes, and mean transverse momenta pt{} of charged particles associated with intermediate to high-pt{} trigger particles ($2.5 < pt < 10$ GeVc) in d+Au and Au+Au collisions at $snn=200$ GeV are presented. For associated particles
Dihadron azimuthal correlations containing a high transverse momentum ($p_T$) trigger particle are sensitive to the properties of the nuclear medium created at RHIC through the strong interactions occurring between the traversing parton and the mediu
The azimuthal anisotropic flow of identified and unidentified charged particles has been systematically studied in Cu+Au collisions at $sqrt{s_{_{NN}}}$ = 200 GeV for harmonics $n=$ 1-4 in the pseudorapidity range $|eta|<1$. The directed flow in Cu+A