论文标题

在凝结中的结合起源于核中的起源

On coalescence as the origin of nuclei in hadronic collisions

论文作者

Bellini, Francesca, Blum, Kfir, Kalweit, Alexander Phillip, Puccio, Maximiliano

论文摘要

规格碰撞(HIC)实验要解决的关键问题中,弱结合的核簇的起源是一个关键问题。簇的测得的产率与现象学统计强壮模型(SHM)的期望大致一致,但是缺乏对聚类形成动力学的理论理解。竞争模型是核聚结,将簇的形成归因于最终状态相互作用(FSI)在核从动力学冻结到观察者传播过程中的影响。该现象与FSI在较小的相对动量差异下的颗粒连续粒子对之间的构成fs触觉相关性方面的影响密切相关。我们给出了合并的简洁理论推导 - 相关关系,从而预测了触发测量的核簇光谱。我们回顾了一个事实,即聚结来源自相对论的伯特盐方程,并回顾有效的量子力学如何控制群集群集中心中心的群集粒子的动力学。我们证明了合并 - 相关关系与从PBPB到PPB和PP碰撞的系统中观察到的群集光谱大致一致。我们特别注意核波功能,我们得出了Hypertriton的合并预测,并表明它也与数据大致一致。我们的工作激发了一个合并的实验计划,该计划涉及统一框架下的femtsoscopicy和群集生产。在该程序中分析的即将到来的PP,PPB和外围PBPB数据可以严格测试合并为簇的起源。

The origin of weakly-bound nuclear clusters in hadronic collisions is a key question to be addressed by heavy-ion collision (HIC) experiments. The measured yields of clusters are approximately consistent with expectations from phenomenological statistical hadronisation models (SHMs), but a theoretical understanding of the dynamics of cluster formation prior to kinetic freeze out is lacking. The competing model is nuclear coalescence, which attributes cluster formation to the effect of final state interactions (FSI) during the propagation of the nuclei from kinetic freeze out to the observer. This phenomenon is closely related to the effect of FSI in imprinting femtoscopic correlations between continuum pairs of particles at small relative momentum difference. We give a concise theoretical derivation of the coalescence--correlation relation, predicting nuclear cluster spectra from femtoscopic measurements. We review the fact that coalescence derives from a relativistic Bethe-Salpeter equation, and recall how effective quantum mechanics controls the dynamics of cluster particles that are nonrelativistic in the cluster centre of mass frame. We demonstrate that the coalescence--correlation relation is roughly consistent with the observed cluster spectra in systems ranging from PbPb to pPb and pp collisions. Paying special attention to nuclear wave functions, we derive the coalescence prediction for hypertriton and show that it, too, is roughly consistent with the data. Our work motivates a combined experimental programme addressing femtoscopy and cluster production under a unified framework. Upcoming pp, pPb and peripheral PbPb data analysed within such a programme could stringently test coalescence as the origin of clusters.

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