PaperPanorama

Nuclear Experiment·nucl-ex

Fri·Aug 21, 2026

4 papers0 primary·4 cross-listed

  1. 01

    The QCD crossover temperature and curvature coefficient from unbiased exponential resummation at physical quark masses in (2+1)-flavor lattice QCD

    Sabarnya Mitra🇩🇪

    We present the first application of the unbiased exponential resummation method to the determination of the QCD pseudocritical temperature at vanishing baryon chemical potential . By reconstructing the finite-density baryon number susceptibility , we define two thermal-derivative observables whose peak positions yield MeV and MeV. We also show that the pseudocritical temperature, obtained from the peak of the fourth-order baryon number susceptibility is consistent with these determinations and with previous lattice-QCD results based on Taylor expansions \cite{Bollweg:2022Pade}. Further, we demonstrate that scaling relations \cite{Bollweg:2022fqq} between and the thermal derivatives of yield mutually consistent estimates of the leading second order curvature coefficient at the corresponding pseudocritical temperatures. A direct analysis of the dependence of the pseudocritical temperatures provides an independent but substantially less constrained determination of the curvature, which remains statistically consistent with the scaling-based estimates. These results demonstrate the consistency of unbiased exponential resummation with the expected scaling behavior and establish it as a complementary approach for probing the QCD crossover at small finite baryon density.

    hep-lathep-phhep-thnucl-ex+10 citations
  2. 02

    Tracing Vacuum Hadronization with Conserved Currents

    Weiyao Ke🇨🇳 · Hai Tao Li🇨🇳 · Wanchen Li🇨🇳 · Xiaohui Liu🇨🇳 · Ding Yu Shao🇨🇳

    We show that color triality constrains the nonperturbative states that screen a Wilson-line endpoint, allowing the joint flows of net electric charge, baryon number, and strangeness to probe QCD vacuum hadronization. Whether evaluated from resolved hadrons in a jet initiated by a quark of flavor or from the corresponding charge correlators, these flows satisfy the Gell-Mann--Nishijima relation , where is the third component of the initiating-quark isospin. The net jet baryon number, , directly probes the relative probability of a diquark--antidiquark vacuum excitation, with the diquark-to-quark production ratio. Thus, for , the baryon number carried by the jet is substantially suppressed relative to the initiating-quark value . Likewise, the strange-to-light pair-production ratio, defined by , is encoded in the measured jet strangeness , predicting a nonzero mean net strangeness even in - and -initiated jets. The conserved-current moments appearing in these relations are independent of the renormalization scale. Their simultaneous measurement therefore provides a direct, flavor-resolved probe of vacuum pair production and quantum-number transport during hadronization.

    hep-phhep-exnucl-exnucl-th0 citations
  3. 03

    Heavy-flavour production and correlations in pp collisions: precision tests of pQCD and hadronisation with ALICE

    Deependra Sharma · ALICE Collaboration

    Heavy quarks (charm and beauty) are predominantly produced in hard partonic scatterings, making their cross sections in proton--proton (pp) collisions calculable in perturbative quantum chromodynamics (pQCD) and thus providing stringent tests of pQCD. Furthermore, the associated production of two charm hadrons in a single collision offers a sensitive probe of multiparton interaction dynamics, distinguishing between single parton scattering (SPS) and double parton scattering (DPS) processes. In this contribution, preliminary measurements of prompt D-meson production are reported, together with the final results of the -meson production cross section down to = 1 GeV/ at midrapidity. The rapidity dependence of B-meson production is investigated by computing the ratio with respect to LHCb measurements at forward rapidity. The associated production of -- pairs in pp collisions at TeV is presented as well, where mesons are reconstructed at midrapidity, while candidates are measured at forward rapidity. These measurements are compared with pQCD calculations and phenomenological models, providing crucial constraints on heavy-quark production, hadronisation, and multiparton interaction dynamics.

    hep-exnucl-ex0 citations
  4. 04

    QED radiative effects in semi-inclusive deep-inelastic scattering: traditional and factorized approaches

    Igor Akushevich🇺🇸 · Haiyan Gao🇺🇸 · Alexander Ilyichev🇧🇾 · Shuo Jia🇺🇸 · Vladimir Khachatryan🇺🇸 · Youjie Lin🇨🇳 · Tianbo Liu🇨🇳 · W. Melnitchouk🇺🇸

    Semi-inclusive deep-inelastic scattering (SIDIS) of leptons is a vital tool for probing the three-dimensional momentum space partonic structure of the nucleon. Reliable extraction of the intrinsic collinear or transverse momentum dependent parton distributions from SIDIS data requires careful treatment of QED radiative effects beyond the Born level. In this work we perform a detailed comparative analysis of QED effects in SIDIS using the traditional Bardin-Shumeiko approach, augmented by the electron structure function method, and a more recent factorized approach that treats QED and QCD radiation on equal footing. We compare analytical and numerical results of these approaches for the unpolarized electroproduction cross sections off the proton and the Collins and Sivers transverse single-spin asymmetries, and identify the sources of discrepancies between the calculations, which for the cross sections can reach up to , , and at Jefferson Lab, HERMES, and EIC kinematics, respectively. To provide a unified approach for reliably extracting partonic information from future SIDIS measurements, we propose a hybrid framework that employs the salient features of both frameworks in their respective regions of applicability.

    hep-phhep-exnucl-exnucl-th0 citations

Affiliations

first authorsco-authorsvia INSPIRE