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    D-Meson Production via Sequential Hadronization in High-Energy Nuclear Collisions

    Zi-Xuan Xu1,*, Wei Dai2,†, Ben-Wei Zhang1,‡, Jiaxing Zhao3,4,§, and Pengfei Zhuang5,6,7,∥

    • *Contact author: zixuan@mails.ccnu.edu.cn
    • †Contact author: weidai@cug.edu.cn
    • ‡Contact author: bwzhang@mail.ccnu.edu.cn
    • §Contact author: jzhao@itp.uni-frankfurt.de
    • ∥Contact author: zhuangpf@mail.tsinghua.edu.cn

    Phys. Rev. Lett. 136, 232301 – Published 12 June, 2026

    DOI: https://doi.org/10.1103/py6l-xdfn

    Abstract

    Heavy flavor production serves as an ideal probe of the hadronization mechanism of the quark-gluon plasma created in relativistic heavy ion collisions. We study charm-quark hadronization using Langevin transport in the medium together with a sequential coalescence model. Since Ds forms earlier than D0, as obtained from the Dirac equation with an in-medium potential extracted from lattice QCD, the Ds elliptic flow v2 is smaller than the D0 v2 in the intermediate-pT region, in good agreement with the recent ALICE data. Incorporating sequential coalescence, charm-quark number conservation, and strangeness enhancement predicts a peak in the yield ratio Ds/D0 at low pT, which can be tested in future heavy-ion collisions.

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