论文标题
在$ \ sqrt {s_ {nn}} $ = 5.02 TEV中,调查了P-PB碰撞中椭圆形各向异性质量分裂中党派和强化动态的作用
Investigating the role of partonic and hadronic dynamics in mass splitting of elliptic anisotropy in p-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV
论文作者
论文摘要
$ v_ {2}^{bADRON} $的质量顺序被视为超级相对论重离子碰撞中集体行为的关键签名之一。已经发现该观察结果符合强相互作用系统对初始空间各向异性的水动力响应。用p-pb/d-au碰撞中鉴定的粒子测量的流量共效率显示出$ v_ {2}^{handron} $相似的质量分解,这表明在小碰撞系统中存在集体动力学。可以说,这种碰撞系统的重叠几何形状中的小尺寸可能不适合需要早期热化的流体动力处理。基于多相运输模型的研究表明,椭圆形或三角各向异性主要是由于Partons的逃生机制,而不是$ V_ {2}^{2}^{HADRON} $的集体和质量顺序,也可以是从合并动力学中产生的,即使在Parton azimutions neciptions中,也可以在AMPT融化版本中实现。在这项工作中,使用AMPT模型对P-PB碰撞进行了研究,以$ \ sqrt {s_ {nn}} $ = 5.02 TEV进行了研究,该模型已被发现在这种系统中解释了椭圆形和thringular流量,其中逃生机制是流量产生的主要源。我们报告说,$ v_ {2}^{hADRON} $的质量分裂可以在AMPT模型的字符串熔化版本中独立起源于党派和HADRONIC级别。
The mass ordering of $v_{2}^{hadron}$ is regarded as one of the key signatures of collective behaviour in ultra relativistic heavy ion collisions. This observation has been found to be in compliance with the hydrodynamical response of a strongly interacting system to the initial spatial anisotropy. Flow co-efficients measured with identified particles in p-Pb/d-Au collisions have shown similar mass-splitting of $v_{2}^{hadron}$ indicating towards the presence of collective dynamics in small collision systems. Arguably, small size in the overlap geometry of such colliding systems may not be suitable for hydrodynamical treatment that demands an early thermalization. Studies based on a multi phase transport model suggests that elliptic or triangular anisotropy is primarily due to escape mechanism of partons rather than hydro like collectivity and mass ordering of $v_{2}^{hadron}$ can be generated from coalescence dynamics as implemented in string melting version of AMPT even when parton azimuthal directions are randomized. In this work, studies have been performed on p-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV using AMPT model which has been found to explain the elliptic and traingular flow in such a system where escape mechanism is the dominant source of flow generation. We report that the mass splitting of $v_{2}^{hadron}$ can originate independently both at the partonic and hadronic level in the string melting version of the AMPT model.