论文标题

通过弹性散射在强烈相互作用的Quark-Gluon等离子体中探索喷气运输系数

Exploring jet transport coefficients by elastic scattering in the strongly interacting quark-gluon plasma

论文作者

Grishmanovskii, Ilia, Song, Taesoo, Soloveva, Olga, Greiner, Carsten, Bratkovskaya, Elena

论文摘要

我们基于有效的动力学准颗粒模型(DQPM)研究了领先的喷气组成部分在强烈相互作用的夸克 - 胶状等离子体(SQGP)介质中的相互作用。 The DQPM describes the non-perturbative nature of the sQGP at finite temperature $T$ and baryon chemical potential $μ_B$ based on a propagator representation of massive off-shell partons (quarks and gluons) whose properties (characterized by spectral functions with $T,μ_B$ dependent masses and widths) are adjusted to reproduce the lQCD EoS for the QGP in thermodynamic平衡。 We present the results for the jet transport coefficients, i.e. the transverse momentum transfer squared per unit length $\hat{q}$ as well as the energy loss per unit length $ΔE =dE/dx$, in the QGP and investigate their dependence on the temperature $T$ and baryon chemical potential $μ_B$ as well as on jet properties such as the leading jet parton momentum, mass, flavor, and the choice of the strong coupling constant.在第一项研究中,仅探索了带有SQGP Parton的主要喷气派部分的弹性散射过程,目前正在丢弃辐射过程(例如Gluon Bremsstrahlung)。我们介绍了SQGP培养基中弹性能量损失的结果与由BAMP和LBT模型获得的PQCD结果以及其他理论方法(例如Lattice QCD和LO-HTL)获得的PQCD结果,以及基于$ \ hat {q}/t^3 $的估计,基于$ \ hat of jets of jets of jet of jet of Joots)用实验重离子数据进行流体动力学计算。

We study the interaction of leading jet partons in a strongly interacting quark-gluon plasma (sQGP) medium based on the effective dynamical quasi-particle model (DQPM). The DQPM describes the non-perturbative nature of the sQGP at finite temperature $T$ and baryon chemical potential $μ_B$ based on a propagator representation of massive off-shell partons (quarks and gluons) whose properties (characterized by spectral functions with $T,μ_B$ dependent masses and widths) are adjusted to reproduce the lQCD EoS for the QGP in thermodynamic equilibrium. We present the results for the jet transport coefficients, i.e. the transverse momentum transfer squared per unit length $\hat{q}$ as well as the energy loss per unit length $ΔE =dE/dx$, in the QGP and investigate their dependence on the temperature $T$ and baryon chemical potential $μ_B$ as well as on jet properties such as the leading jet parton momentum, mass, flavor, and the choice of the strong coupling constant. In this first study only elastic scattering processes of a leading jet parton with the sQGP partons are explored discarding presently the radiative processes (such as gluon Bremsstrahlung). We present a comparison of our results for the elastic energy loss in the sQGP medium with the pQCD results obtained by the BAMPS and LBT models as well as with other theoretical approaches such as lattice QCD and the LO-HTL and also with estimates of $\hat{q}/T^3$ by the color string percolation model (CSPM) and the JET and JETSCAPE Collaborations based on a comparison of hydrodynamical calculations with experimental heavy-ion data.

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