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- W2078586021 abstract "In a hydrodynamic model, we have studied $J/ensuremath{psi}$ suppression and elliptic flow in $mathrm{Au}+mathrm{Au}$ collisions at the Relativistic Heavy Ion Collider (RHIC) energy $sqrt{s}=200$ GeV. At the initial time, $J/ensuremath{psi}$'s are randomly distributed in the fluid. As the fluid evolves in time, the free-streaming $J/ensuremath{psi}$'s are dissolved if the local fluid temperature exceeds a melting temperature ${T}_{J/ensuremath{psi}}$. Sequential melting of charmonium states (${ensuremath{chi}}_{c}$, ${ensuremath{psi}}^{'}$, and $J/ensuremath{psi}$), with melting temperatures ${T}_{{ensuremath{chi}}_{c}}={T}_{{ensuremath{psi}}^{'}}ensuremath{approx}1.2{T}_{c}$ and ${T}_{J/ensuremath{psi}}ensuremath{approx}2{T}_{c}$ and a feed-down fraction $Fensuremath{approx}0.3$, is consistent with the PHENIX data on $J/ensuremath{psi}$ suppression and near-zero elliptic flow for $J/ensuremath{psi}$'s. It is also shown that the model will require substantial regeneration of charmonium if the charmonium states dissolve at a temperature close to the critical temperatures, ${T}_{{ensuremath{chi}}_{c}}={T}_{{ensuremath{psi}}^{'}}ensuremath{leqslant}{T}_{c}$ and ${T}_{J/ensuremath{psi}}ensuremath{approx}1.2{T}_{c}$. The regenerated charmonium will have positive elliptic flow." @default.
- W2078586021 created "2016-06-24" @default.
- W2078586021 creator A5011109623 @default.
- W2078586021 date "2009-10-16" @default.
- W2078586021 modified "2023-09-23" @default.
- W2078586021 title "Hydrodynamical model forJ/ψsuppression and elliptic flow" @default.
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- W2078586021 doi "https://doi.org/10.1103/physrevc.80.047901" @default.
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