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            A<sc>bstract</sc> ThepT-differential cross section ofωmeson production in pp collisions at$$ \sqrt{s} $$ = 13 TeV at midrapidity (|y| <0.5) was measured with the ALICE detector at the LHC, covering an unprecedented transverse-momentum range of 1.6< pT<50 GeV/c. The meson is reconstructed via theω→π+π−π0decay channel. The results are compared with various theoretical calculations: PYTHIA8.2 with the Monash 2013 tune overestimates the data by up to 50%, whereas good agreement is observed with Next-to-Leading Order (NLO) calculations incorporatingωfragmentation using a broken SU(3) model. Theω/π0ratio is presented and compared with theoretical calculations and the available measurements at lower collision energies. The presented data triples thepTranges of previously available measurements. A constant ratio ofCω/π0= 0.578 ± 0.006 (stat.) ± 0.013 (syst.) is found above a transverse momentum of 4 GeV/c, which is in agreement with previous findings at lower collision energies within the systematic and statistical uncertainties.more » « lessFree, publicly-accessible full text available April 1, 2026
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            Abstract The femtoscopic study of pairs of identical pions is particularly suited to investigate the effective source function of particle emission, due to the resulting Bose–Einstein correlation signal. In small collision systems at the LHC, pp in particular, the majority of the pions are produced in resonance decays, which significantly affect the profile and size of the source. In this work, we explicitly model this effect in order to extract the primordial source in pp collisions at$$\sqrt{s}~=~13$$ TeV from charged$$\uppi $$ –$$\uppi $$ correlations measured by ALICE. We demonstrate that the assumption of a Gaussian primordial source is compatible with the data and that the effective source, resulting from modifications due to resonances, is approximately exponential, as found in previous measurements at the LHC. The universality of hadron emission in pp collisions is further investigated by applying the same methodology to characterize the primordial source of$$\textrm{K}$$ –$$\textrm{p}$$ pairs. The size of the primordial source is evaluated as a function of the transverse mass ($$m_{\textrm{T}}$$ ) of the pairs, leading to the observation of a common scaling for both$$\uppi $$ –$$\uppi $$ and$$\textrm{K}$$ –$$\textrm{p}$$ , suggesting a collective effect. Further, the present results are compatible with the$$m_{\textrm{T}}$$ scaling of the$$\textrm{p}$$ –$$\textrm{p}$$ and p$$-\Lambda $$ primordial source measured by ALICE in high multiplicity pp collisions, providing additional evidence for the presence of a common emission source for all hadrons in small collision systems at the LHC. This will allow the determination of the source function for any hadron–hadron pairs with high precision, granting access to the properties of the possible final-state interaction among pairs of less abundantly produced hadrons, such as strange or charmed particles.more » « lessFree, publicly-accessible full text available February 1, 2026
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            Free, publicly-accessible full text available November 1, 2025
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            A<sc>bstract</sc> ThepT-differential production cross sections of non-prompt D0, D+, and$$ {\textrm{D}}_{\textrm{s}}^{+} $$ mesons originating from beauty-hadron decays are measured in proton–proton collisions at a centre-of-mass energy$$ \sqrt{s} $$ = 13 TeV. The measurements are performed at midrapidity, |y|<0.5, with the data sample collected by ALICE from 2016 to 2018. The results are in agreement with predictions from several perturbative QCD calculations. The fragmentation fraction of beauty quarks to strange mesons divided by the one to non-strange mesons,fs/(fu+fd), is found to be 0.114 ± 0.016 (stat.) ± 0.006 (syst.) ± 0.003 (BR) ± 0.003 (extrap.). This value is compatible with previous measurements at lower centre-of-mass energies and in different collision systems in agreement with the assumption of universality of fragmentation functions. In addition, the dependence of the non-prompt D meson production on the centre-of-mass energy is investigated by comparing the results obtained at$$ \sqrt{s} $$ = 5.02 and 13 TeV, showing a hardening of the non-prompt D-mesonpT-differential production cross section at higher$$ \sqrt{s} $$ . Finally, the$$ \textrm{b}\overline{\textrm{b}} $$ production cross section per unit of rapidity at midrapidity is calculated from the non-prompt D0, D+,$$ {\textrm{D}}_{\textrm{s}}^{+} $$ , and$$ {\Lambda}_{\textrm{c}}^{+} $$ hadron measurements, obtaining$$ \textrm{d}\sigma /\textrm{d}y=75.2\pm 3.2\left(\textrm{stat}.\right)\pm 5.2{\left(\textrm{syst}.\right)}_{-3.2}^{+12.3}\left(\textrm{extrap}.\right) $$ μb.more » « less
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            Abstract The first measurement of the multiplicity dependence of intra-jet properties of leading charged-particle jets in proton–proton (pp) collisions is reported. The mean charged-particle multiplicity and jet fragmentation distributions are measured in minimum-bias and high-multiplicity pp collisions at center-of-mass energy$$\sqrt{s}$$ = 13 TeV using the ALICE detector. Jets are reconstructed from charged particles produced in the midrapidity region ($$|\eta | < 0.9$$ ) using the sequential recombination anti-$$k_{\textrm{T}}$$ algorithm with jet resolution parametersR= 0.2, 0.3, and 0.4 for the transverse momentum ($$p_\textrm{T}$$ ) interval 5–110 GeV/c. The high-multiplicity events are selected by the forward V0 scintillator detectors. The mean charged-particle multiplicity inside the leading jet cone rises monotonically with increasing jet$$p_\textrm{T}$$ in qualitative agreement with previous measurements at lower energies. The distributions of jet fragmentation function variables$$z^{\textrm{ch}}$$ and$$\xi ^{\textrm{ch}}$$ are measured for different jet-$$p_\textrm{T}$$ intervals. Jet-$$p_\textrm{T}$$ independent fragmentation of leading jets is observed for wider jets except at high- and low-$$z^{\textrm{ch}}$$ values. The observed “hump-backed plateau” structure in the$$\xi ^{\textrm{ch}}$$ distribution indicates suppression of low-$$p_\textrm{T}$$ particles. In high-multiplicity events, an enhancement of the fragmentation probability of low-$$z^{\textrm{ch}}$$ particles accompanied by a suppression of high-$$z^{\textrm{ch}}$$ particles is observed compared to minimum-bias events. This behavior becomes more prominent for low-$$p_\textrm{T}$$ jets with larger jet radius. The results are compared with predictions of QCD-inspired event generators, PYTHIA 8 with Monash 2013 tune and EPOS LHC. It is found that PYTHIA 8 qualitatively reproduces the jet modification in high-multiplicity events except at high jet$$p_\textrm{T}$$ . These measurements provide important constraints to models of jet fragmentation.more » « less
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            The two-particle momentum correlation functions between charm mesons ( and ) and charged light-flavor mesons ( and ) in all charge combinations are measured for the first time by the ALICE Collaboration in high-multiplicity proton–proton collisions at a center-of-mass energy of . For DK and pairs, the experimental results are in agreement with theoretical predictions of the residual strong interaction based on quantum chromodynamics calculations on the lattice and chiral effective field theory. In the case of and pairs, tension between the calculations including strong interactions and the measurement is observed. For all particle pairs, the data can be adequately described by Coulomb interaction only, indicating a shallow interaction between charm and light-flavor mesons. Finally, the scattering lengths governing the residual strong interaction of the and systems are determined by fitting the experimental correlation functions with a model that employs a Gaussian potential. The extracted values are small and compatible with zero. © 2024 CERN, for the ALICE Collaboration2024CERNmore » « less
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            This Letter presents the most precise measurement to date of the matter-antimatter imbalance at midrapidity in Pb-Pb collisions at a center-of-mass energy per nucleon pair . Using the Statistical Hadronization framework, it is possible to obtain the value of the electric charge and baryon chemical potentials, and , with unprecedented precision. A centrality-differential study of the antiparticle-to-particle yield ratios of charged pions, protons, baryons, and light (hyper)nuclei is performed. These results indicate that the system created in Pb-Pb collisions at the LHC is on average baryon-free and electrically neutral at midrapidity. © 2024 CERN, for the ALICE Collaboration2024CERNmore » « less
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