论文标题

检查对p-pb碰撞中电荷粒子横向动量光谱和椭圆流的依赖性修饰,在CERN大型强生对撞机上可用的能量

Examining the event-shape dependent modifications to charged-particle transverse momentum spectra and elliptic flow in p-Pb collisions at energies available at the CERN Large Hadron Collider

论文作者

Kar, Somnath, Choudhury, Subikash, Zhang, Xiaoming, Zhou, Daicui

论文摘要

在质子 - 普罗顿(PP)或质子 - 核(P-A)碰撞等小型系统中,据称集体动力学的签名仍然缺乏明确的理解。尽管数据与流体动力学模型有定性和/或定量一致,但仍不清楚小型系统中的谐波流是否与初始几何形状驱动的流体动力集体性的常见物理图片有关。在目前的工作中,我们旨在通过援引事件形状工程(ESE)的新颖概念来解决这个问题,该概念已被利用,以控制高能重型离子碰撞中最初的几何形状。我们通过构造参考流量向量,$ q_ {2} $来使用ESE,该$ q_ {2} $允许根据其椭圆度来表征事件。将此技术应用于数据集,从3+1D粘性流体动力模型EPOS3进行模拟,我们研究了事件形状依赖性的修改,以对某些批量属性(包括包含横向动量)($ p_ {t} $)光谱和$ p_ {t} $ - 微分$ v_ {2} $ p-pb collisions collisions($ p_ {t} $)光谱。根据参考流量向量$ q_ {2} $选择事件,我们观察到事件形状诱导的$ v_ {2} $的修改,这是$ p_ {t} $的函数,但是,包含$ p_ {t} $ - 带电的粒子的含有$ p_ {t} $,似乎是该事件分形式选择的。

Purported signatures of collective dynamics in small systems like proton-proton (pp) or proton-nucleus (p-A) collisions still lack unambiguous understanding. Despite the qualitative and/or quantitative agreement of the data to hydrodynamic models, it has remained unclear whether the harmonic flows in small systems relate to the common physical picture of hydrodynamic collectivity driven by the initial geometry. In the present work, we aim to address this issue by invoking a novel concept of Event Shape Engineering (ESE), which has been leveraged to get some control of the initial geometry in high-energy heavy-ion collisions. We utilise ESE by constructing a reference flow vector, $q_{2}$ that allows to characterise an event based on it's ellipticity. Applying this technique on a data set, simulated from a 3+1D viscous hydrodynamic model EPOS3, we study the event-shape dependent modifications to some of the bulk properties like, inclusive transverse momentum ($p_{T}$) spectra and $p_{T}$-differential $v_{2}$ for p-Pb collisions at 5.02 TeV. Selecting events on the basis of different magnitudes of reference flow vector $q_{2}$, we observe a hint of event-shape induced modifications of $v_{2}$ as a function of $p_{T}$ but, the inclusive $p_{T}$-spectra of charged particles seem to be insensitive to this event-shape selection.

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