论文标题

中辐射辐射,并在流动力学阶段真空传播

Medium-induced radiation with vacuum propagation in the pre-hydrodynamics phase

论文作者

Andres, Carlota, Apolinário, Liliana, Dominguez, Fabio, Martinez, Marcos Gonzalez, Salgado, Carlos A.

论文摘要

在重离子碰撞之后,最近发现了喷气淬火可观察物来限制初始阶段的潜力,因此必须更好地了解夸克 - 胶状等离子体(QGP)的中等诱导的辐射过程及其对高$ p_t $的观察力的影响。在这项工作中,我们概括了中等诱导的辐射的BDMPS-Z框架,以解释在创建QGP之前发生的其他排放。为了简单起见,我们假设在静水动力学阶段中,硬质part量像真空一样繁殖。这种设置使我们能够通过与通常在介质内部但起点不同的常规场景进行比较,从附加初始辐射中隔离贡献。使用完全重新定义的发射光谱的数值实现和通常的分析近似值,我们发现,通过真空替换介质的初始板,从真空产量中替换为低辐射的GLUON能量的发射光谱的显着降低,而高能尾巴则保持不变。最后,我们评估了通过真空传播对单包粒子抑制$ r_ {aa} $和高$ p_t $ azimuthal不对称$ v_2 $替换初始介质的效果。我们的发现表明,在流体动物化之前考虑真空传播会导致$ v_2 $的增加,从而证实了在初始阶段的射流淬火治疗的重要性,以正确描述这两种可观察结果。

The recent discovery of the potential of jet quenching observables to constrain the initial stages after a heavy-ion collision makes imperative to have a better understanding of the process of medium-induced radiation before the formation of the quark-gluon plasma (QGP) and its impact on observables at high-$p_T$. In this work, we generalize the BDMPS-Z framework for medium-induced radiation to account for additional emissions occurring before the creation of the QGP. For simplicity, we assume that during the pre-hydrodynamics phase the hard parton propagates as in vacuum. This set-up, allows us to isolate the contribution from the additional initial radiation by comparing with the usual scenarios in which the emitter is created inside the medium but with different starting points. Using both a numerical implementation of the fully resummed emission spectrum and the usual analytical approximations, we find that replacing an initial slab of the medium by vacuum yields to a significant reduction of the emission spectrum for low radiated gluon energies, while the high-energy tails remain largely unmodified. Finally, we assess the effect of replacing the initial medium by vacuum propagation on the single-inclusive particle suppression $R_{AA}$ and high-$p_T$ azimuthal asymmetry $v_2$. Our findings indicate that considering vacuum propagation prior to hydrodynamization leads to an increase in the $v_2$, thus corroborating the importance of the treatment of jet quenching in the initial stages for the correct description of both observables.

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