English

Investigating $D^0$ meson production in $p-$Pb collisions at 5.02 TeV with a multi-phase transport model

Nuclear Theory 2024-03-12 v1

Abstract

We study the production of D0D^0 meson in pp+pp and pp-Pb collisions using the improved AMPT model considering both coalescence and independent fragmentation of charm quarks after the Cronin broadening are included. After a detailed discussion of the improvements implemented in the AMPT model for heavy quark production, we show that the modified AMPT model can provide good description of D0D^0 meson spectra in pp-Pb collisions, the QpPbQ_{\rm pPb} data at different centrality and RpPbR_{\rm pPb} data in both mid- and forward (backward) rapidities. We also studied the effects of nuclear shadowing and parton cascade on the rapidity dependence of D0D^{0} meson production and RpPbR_{\rm pPb}. Our results indicate that having the same strength of the Cronin (i.e δ\delta value) obtained from the mid-rapidity data leads to a considerable overestimation of the D0D^0 meson spectra and RpPbR_{\rm pPb} data at high pTp_{T} in the backward rapidity. As a result, the δ\delta is determined via a χ2\chi^2 fitting of the RpPbR_{\rm pPb} data across various rapidities. This work lays the foundation for a better understanding of cold-nuclear-matter (CNM) effects in relativistic heavy-ion collisions.

Keywords

Cite

@article{arxiv.2403.06099,
  title  = {Investigating $D^0$ meson production in $p-$Pb collisions at 5.02 TeV with a multi-phase transport model},
  author = {Chao Zhang and Liang Zheng and ShuSu Shi and Zi-Wei Lin},
  journal= {arXiv preprint arXiv:2403.06099},
  year   = {2024}
}