论文标题
一种液体可能无法统治所有
One fluid might not rule them all
论文作者
论文摘要
在此程序中,我们介绍了使用具有不同初始条件模型的Vishnu Hybrid模型,称为Hijing,Super-Mc和Trento的Vishnu Hybrid模型,在$ \ sqrt {s} = $ 13 TEV上进行了高质量质子的流体动力集体性研究。我们发现,通过精心调整的参数,流体动力模拟可以对测得的两粒子相关性进行合理的描述。然而,多粒子单和混合谐波累积物不能用这三个初始条件的流体动力学来描述,即使在少数情况下对于符号也是如此。进一步的研究表明,非线性响应在P-P系统的流体动力扩张中起重要作用。这样的效果可以将$ C_2 \ {4 \} $从初始状态的负值更改为最终状态的正值。多粒子累积的流体动力描述的失败引发了有关流体动力学是否可以统治所有碰撞系统的问题,包括LHC处的P-P-P碰撞。
In this proceeding, we present our recent investigations on hydrodynamic collectivity in high-multiplicity proton--proton collisions at $\sqrt{s}=$ 13 TeV using the VISHNU hybrid model with different initial condition models, called HIJING, super-MC and TRENTo. We find that with carefully tuned parameters, hydrodynamic simulations can give reasonable descriptions of the measured two-particle correlations. However, multi-particle single and mixed harmonics cumulants can not be described by hydrodynamics with these three initial conditions, even for the signs in a few cases. Further studies show that the non-linear response plays an important role in the hydrodynamic expansion of the p--p systems. Such an effect can change $c_2\{4\}$ from a negative value in the initial state to a positive value in the final state. The failure of the hydrodynamic description of multi-particle cumulant triggers the questions on whether the hydrodynamics can rule all collision systems, including p--p collisions at the LHC.