论文标题

$ x(3872)$和$ t_ {cc} $:重离子碰撞中的结构和制作

$X(3872)$ and $T_{cc}$: structures and productions in heavy ion collisions

论文作者

Yun, Hyeongock, Park, Daeho, Noh, Sungsik, Park, Aaron, Park, Woosung, Cho, Sungtae, Hong, Juhee, Kim, Yongsun, Lim, Sanghoon, Lee, Su Houng

论文摘要

我们认为为什么最近观察到的$ t_ {cc} $可能是一种紧凑的多Quark配置,也可以是由魅力介子组成的松散结合的分子构型,而$ x(3872)$很可能是分子构型。该论点是基于这些四夸克状态的不同短距离相互作用,来自夸克模型中的颜色色和颜色旋转相互作用,并且在类似于Deuteron案例的较大距离下存在常见的强d波混合,该距离对于分子构型而言,这会导致大尺寸。这种类比在较大的距离上使我们能够使用合并模型在重离子碰撞中计算出在重离子碰撞中产生的四夸克人的横向动量依赖性,该模型成功地使用质子光谱将deutron数据成功复制。从我们的方法获得的集成$ x(3872)$产量与$ψ(2s)$产量从统计强化模型获得的比率为0.806 \ pm 0.234 $,这比通过使用与CMS实验的数据一致的统计模型预测获得的元素要比使用统计模型预测而获得的。由于以前计算的$ t_ {cc} $的横向动量分布,假设结构是紧凑的多Quark构型的明显不同,因此Tetraquark State的横向分布的实验测量将区分其两个可能的结构。

We argue why the recently observed $T_{cc}$ could either be a compact multiquark configuration or a loosely bound molecular configuration composed of charmed mesons, whereas the $X(3872)$ is most likely a molecular configuration. The argument is based on different short range interactions for these tetraquark states coming from the color-color and color-spin interaction in a quark model, and the presence of a common strong D-wave mixing at larger distance similar to the deuteron case, which for the molecular configurations lead to large sizes. Such an analogy at large distance allows us to calculate the transverse momentum dependence of the loosely bound molecular configuration of tetraquarks produced in heavy ion collisions using the coalescence model that successfully reproduces the deutron data using the proton spectra. The ratio of the integrated $X(3872)$ yield obtained from our method to the $ψ(2S)$ yield obtained from statistical hadronization model method is calculated to be $0.806 \pm 0.234$, which is a factor of 2.47 larger than that obtained by using statistical model predictions for both particles and in line with the data from the CMS experiment. As the previously calculated transverse momentum distribution of the $T_{cc}$ assuming the structure to be a compact multiquark configuration is markedly different, experimental measurements of the transverse distribution of the tetraquark states will discriminate between their two possible structures.

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