论文标题

在热力学方法中,重离子碰撞中的光核生产

Light-nuclei production in heavy-ion collisions within a thermodynamical approach

论文作者

Kozhevnikova, M., Ivanov, Yu. B.

论文摘要

我们介绍了在更新的基于三流体流体动力学的事件模拟器中,由URQMD(超偏好量子分子动力学)最终状态相互作用(thuseus)在更新的三流体流体力学事件模拟器(TUSEUS)中介绍了相对论重型离子碰撞的模拟结果。在$ \ sqrt {s_ {nn}} = $ 6.4--19.6 GEV的碰撞能量范围内,对PB+PB和AU+AU碰撞进行了模拟。在热力学方法中,与哈德子在热力学方法中进行了光核生产。与光核相关的唯一附加参数是晚期冷冻输出的能量密度,该参数模仿了碰撞的燃烧阶段,因为光核不参与URQMD的演化。该参数是根据质子横向摩托谱的最佳繁殖条件固定的,该质子横向摩托频谱在爆发后燃烧器后的爆发量后期固定。更新的Theseus导致并不完美,但是对光核的批量观察物的数据合理再现,尤其是它们对碰撞能量和光核质量的功能依赖性。还考虑了各种比率,$ d/p $,$ t/p $,$ t/d $和$ n(t)\ times n(p)/n^2(d)$。光核的定向流动更加参与。显然,它需要明确处理违反动力学平衡的光核的燃烧燃料演化。光核数据的不完善繁殖为产生的光核中的中等效果留出了空间。

We present results of simulations of light-nuclei production in relativistic heavy-ion collisions within updated Three-fluid Hydrodynamics-based Event Simulator Extended by UrQMD (Ultra-relativistic Quantum Molecular Dynamics) final State interactions (THESEUS). The simulations were performed for Pb+Pb and Au+Au collisions in the collision energy range of $\sqrt{s_{NN}}=$ 6.4--19.6 GeV. The light-nuclei production is treated within the thermodynamical approach on equal basis with hadrons. The only additional parameter related to the light nuclei is the energy density of late freeze-out that imitates afterburner stage of the collision because the light nuclei do not participate in the UrQMD evolution. This parameter is fixed from the condition of the best reproduction of the proton transverse-momentum spectrum after the UrQMD afterburner by that at the late freeze-out. The updated THESEUS results in not perfect, but a reasonable reproduction of data on bulk observables of the light nuclei, especially their functional dependence on the collision energy and light-nucleus mass. Various ratios, $d/p$, $t/p$, $t/d$, and $N(t)\times N(p)/N^2(d)$, are also considered. The directed flow of light nuclei turns out to be more involved. Apparently, it requires explicit treatment of the afterburner evolution of light nuclei that violates the kinetic equilibrium. Imperfect reproduction of the light-nuclei data leaves room for medium effects in produced light nuclei.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源