Rapidity dependence of antideuteron coalescence in pp collisions at $\sqrt{s}$ = 13 TeV with ALICE

ALICE Collaboration
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Abstract

The production yields of antideuterons and antiprotons are measured in pp collisions at a center-of-mass energy of $\sqrt{s}=13$ TeV, as a function of transverse momentum ($p_{\rm T}$) and rapidity ($y$), for the first time up to $|y|= 0.7$. The measured spectra are used to study the $p_{\rm T}$ and rapidity dependence of the coalescence parameter $B_2$, which quantifies the coalescence probability of antideuterons. The $p_{\rm T}$ and rapidity dependence of the obtained $B_2$ is extrapolated for $p_{\rm T}> 1.7$ GeV/$c$ and $|y|>0.7$ using the phenomenological antideuteron production model implemented in PYTHIA 8.3 as well as a baryon coalescence afterburner model based on EPOS 3. Such measurements are of interest to the astrophysics community, since they can be used for the calculation of the flux of antinuclei from cosmic rays, in combination with coalescence models.
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ALICE 在 $\sqrt{s}$ = 13 TeV 的 pp 对撞中反氘核凝聚的速度依赖性
首次测量了在质量中心能量为$\sqrt{s}=13$ TeV的pp对撞中反氘核和反质子的产率,它是反向动量($p_{\rm T}$)和快速性($y$)的函数,最高可达$|y|=0.7$。测量到的光谱被用来研究凝聚参数$B_2$与p_{\rm T}$和快速性的相关性,该参数量化了反氘核的凝聚概率。利用PYTHIA 8中的现象学反氘核产生模型,我们推算出了在$p_{\rm T}$>1.7$ GeV/$c$和$|y|>0.7$的情况下,所获得的$B_2$的p_{\rm T}$和快速性依赖性。这些测量结果对天体物理学界很有意义,因为它们可以用于计算宇宙射线和凝聚模型产生的反核通量。
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