论文标题

横向动量光谱的流体速度

Fluid velocity from transverse momentum spectra

论文作者

Guillen, Anthony, Ollitrault, Jean-Yves

论文摘要

我们将超旧核核碰撞中外向辐射的横向动量分布作为增强热分布的叠加。在这种概括常规爆炸波的方法中,动量分布由流体速度的分布确定。我们分析了这种广义的爆炸波参数化和完整的流体动力计算之间的差异。然后,我们将广义的Blast-Wave拟合应用于$ \ sqrt {s _ {\ rm nn}} = 2.76 \ \ \ \ m atrm {tev} $的PB+PB碰撞的实验数据。拟合是合理的,最多可达$ p_t \ sim 6 \ \ mathrm {gev} $,远远超出了通常应用流体动力学的范围,但不是完美的。基于拟合和数据之间的差异,我们认为理想的流体动力计算不能同时拟合所有已识别的粒子光谱,而与特定的实现无关。特别是,数据以低$ p_t $的方式显示出大量过量的亲Pions,其物理解释将被讨论。数据还表明,随着碰撞变得不那么中心,流体速度的分布变得更宽。这种扩展是通过事件的流体动力计算来解释的,在事件中,它是由初始状态波动的中心性依赖性引起的。

We parametrize the transverse momentum distribution of outgoing hadrons in ultrarelativistic nucleus-nucleus collisions as a superposition of boosted thermal distributions. In this approach, which generalizes the conventional blast wave, the momentum distribution is determined by the distribution of the fluid velocity. We analyze the difference between this generalized blast-wave parametrization and a full hydrodynamic calculation. We then apply the generalized blast-wave fit to experimental data on Pb+Pb collisions at $\sqrt{s_{\rm NN}}=2.76\ \mathrm{TeV}$. The fit is reasonable up to $p_t\sim 6\ \mathrm{GeV}$, much beyond the range where hydrodynamics is usually applied, but not perfect. Based on the differences between the fit and the data, we argue that an ideal hydrodynamic calculation cannot fit simultaneously all identified particle spectra, irrespective of the specific implementation. In particular, data display a significant excess of pions at low $p_t$, whose physical interpretation is discussed. Data also show that the distribution of the fluid velocity becomes broader as the collision becomes less central. This broadening is explained by event-by-event hydrodynamic calculations, where it results from the centrality dependence of initial-state fluctuations.

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