Signatures of α -clustering in O16 by using a multiphase transport model

Yi-An Li, Song Zhang, Yugang Ma
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引用次数: 6

Abstract

$\alpha$-clustered structures in light nuclei could be studied through "snapshots" taken by relativistic heavy-ion collisions. A multiphase transport (AMPT) model is employed to simulate the initial structure of collision nuclei and the proceeding collisions at center of mass energy $\sqrt{s_{NN}}$ = 6.37 TeV. This initial structure can finally be reflected in the subsequent observations, such as elliptic flow ($v_{2}$), triangular flow ($v_{3}$) and quadrangular flow ($v_4$). Three sets of the collision systems are chosen to illustrate system scan is a good way to identify the exotic $\alpha$-clustered nuclear structure, case I: $\mathrm{^{16}O}$ nucleus (with or without $\alpha$-cluster) + ordinary nuclei (always in Woods-Saxon distribution) in most central collisions, case II: $\mathrm{^{16}O}$ nucleus (with or without $\alpha$-cluster) + $\mathrm{^{197}Au}$ nucleus collisions for centrality dependence, and case III: symmetric collision systems (namely, $^{10}$B + $^{10}$B, $^{12}$C + $^{12}$C, $^{16}$O + $^{16}$O (with or without $\alpha$-cluster), $^{20}$Ne + $^{20}$Ne, and $^{40}$Ca + $^{40}$Ca) in most central collisions. Our calculations propose that relativistic heavy-ion collision experiments at $\sqrt{s_{NN}}$ = 6.37 TeV are promised to distinguish the tetrahedron structure of $\mathrm{^{16}O}$ from the Woods-Saxon one and shed lights on the system scan projects in experiments.
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基于多相输运模型的O16中α-聚类特征
$\alpha$可以通过相对论性重离子碰撞拍摄的“快照”来研究轻核中的簇状结构。采用多相输运(AMPT)模型模拟了碰撞核的初始结构和在质能中心$\sqrt{s_{NN}}$ = 6.37 TeV处的后续碰撞。这种初始结构最终可以在后续的观测中体现出来,如椭圆流($v_{2}$)、三角形流($v_{3}$)和四边形流($v_4$)。选择三组碰撞系统来说明系统扫描是识别奇异的$\alpha$ -聚类核结构的好方法,情况I:在大多数中心碰撞中$\mathrm{^{16}O}$核(有或没有$\alpha$ -聚类)+普通核(总是在Woods-Saxon分布中),情况II: $\mathrm{^{16}O}$核(有或没有$\alpha$ -聚类)+ $\mathrm{^{197}Au}$核碰撞中心依赖性,情况III:对称碰撞系统(即$^{10}$ B + $^{10}$ B, $^{12}$ C + $^{12}$ C, $^{16}$ O + $^{16}$ O(有或没有$\alpha$ -cluster), $^{20}$ Ne + $^{20}$ Ne和$^{40}$ Ca + $^{40}$ Ca)在大多数中心碰撞中。我们的计算表明,$\sqrt{s_{NN}}$ = 6.37 TeV的相对论重离子碰撞实验有望将$\mathrm{^{16}O}$的四面体结构与Woods-Saxon结构区分开来,并为实验中的系统扫描项目提供了启示。
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