Deuteron, triton, helium-3 and hypertriton production in relativistic heavy-ion collisions via stochastic multi-particle reactions

Martha Ege, Justin Mohs, Jan Staudenmaier, Hannah Elfner
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Abstract

The production of light nuclei in heavy -ion collisions is an excellent probe for studying the phase diagram of quantum chromodynamics and for the search of a critical end point. In this work we apply a hybrid approach in which we study the light nuclei production in the afterburner stage of central Au+Au collisions at $\sqrt{s}_{NN}=7.7$, 14.5 and 19.6 GeV. In this stage, light nuclei are produced dynamically in $4\leftrightarrow 2$ catalysis reactions. A comparison of the dynamic production and a coalescence approach is presented for transverse momentum spectra of deuterons, tritons, $^3\rm He$ nuclei and hypertritons and ratios of light nuclei yields. A good agreement with the experimentally measured yield of nuclei is found and we proceed to further investigate the production mechanisms of light nuclei by calculating the rates of the important channels for the formation and disintegration. We find that the afterburner stage is essential for the description of light nuclei formation in heavy-ion collisions, as light nuclei undergo a large number of interactions.
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通过随机多粒子反应在相对论重离子碰撞中产生氘核、三子、氦-3 和超质子
重离子碰撞中轻核的产生是研究量子色动力学相图和寻找临界终点的绝佳探针。在这项工作中,我们采用了一种混合方法,研究了在$\sqrt{s}_{NN}=7.7$、14.5和19.6 GeV的中心Au+Auc对撞中后燃器阶段的轻核产生。在这个阶段,轻核是在 $4\leftrightarrow 2$ 催化反应中动态产生的。对氘核、三元子、$^3\rm He$ 核和超三元子的横动量谱以及轻核产率比进行了动态产生和凝聚方法的比较。通过计算轻核形成和分解的重要通道的速率,我们进一步研究了轻核的产生机制。我们发现,后燃器阶段对于描述重离子碰撞中轻核的形成至关重要,因为轻核会发生大量的相互作用。
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