A centrality-tuned HYDJET++ simulation matches STAR charm-hadron elliptic and triangular flow up to pT around 4 GeV/c and predicts v2-v4 for D± and Lambda_c.
Quark number scaling of $v_2$ in transverse kinetic energy and it's implications for coalescence models
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abstract
We find that a simple extension of the coalescence model is sufficient to incorporate the perfect quark number scaling behavior of the elliptic flow in transverse kinetic energy, recently discovered by the PHENIX Collaboration. The flavor dependence of the elliptic flow can be consistently described in the low and intermediate $p_T$ if the transverse kinetic energy is conserved in the $2\to1$ or $3\to1$ parton coalescence process at the hadronization. Thus suggesting the quark coalescence as a possible hadronization mechanism at low $p_T$ as well.
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Study of anisotropic flow of heavy hadrons in Au + Au collisions at $\sqrt{s_{NN}} =$ 200 GeV using HYDJET++ framework
A centrality-tuned HYDJET++ simulation matches STAR charm-hadron elliptic and triangular flow up to pT around 4 GeV/c and predicts v2-v4 for D± and Lambda_c.