arXiv:1902.06254·v2·Nuclear Theory
Impact of Glasma on heavy quark observables in nucleus-nucleus collisions at LHC
Yifeng Sun🇮🇹 · Gabriele Coci🇮🇹 · Santosh Kumar Das🇮🇳 · Salvatore Plumari🇮🇹 · Marco Ruggieri🇨🇳 · Vincenzo Greco🇮🇹
Abstract
In the pre-thermal equilibrium stage of relativistic heavy-ion collisions, a strong quasi-classical transverse gluon field emerges at about and evolves together with their longitudinal counterparts according to the classical Yang-Mills (CYM) equations. Recently it has been shown that these fields induce a diffusion of charm quarks in momentum space resulting in a tilt of their spectrum without a significant drag. We find that in nucleus-nucleus collisions at LHC such a novel dynamics of charm quarks leads to an initial enhancement of the nuclear modification factor () at larger than 2 GeV contrary to the standard lore. Moreover, the same dynamics leads to a larger final elliptic flow () inducing a relation between and that is quite close to the experimental measurements. Our study also shows that such an initial pre-thermal stage is unlikely to be described in terms of a standard drag and diffusion dynamics, because even if one tune such coefficients to reproduce the same this would imply a significantly smaller .
Comments: 7 pages, 4 figures