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Creators/Authors contains: "Lindner, A"

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  1. Free, publicly-accessible full text available June 1, 2026
  2. The correlations between event-by-event fluctuations of symmetry planes are measured in Pb-Pb collisions at a center-of-mass energy per nucleon pair s N N = 5.02 TeV recorded by the ALICE detector at the Large Hadron Collider. This analysis is conducted using the Gaussian estimator technique, which is insensitive to biases from correlations between different flow amplitudes. The study presents, for the first time, the centrality dependence of correlations involving up to five different symmetry planes. The correlation strength varies depending on the harmonic order of the symmetry plane and the collision centrality. Comparisons with measurements from lower energies indicate no significant differences within uncertainties. Additionally, the results are compared with hydrodynamic model calculations. Although the model predictions provide a qualitative explanation of the experimental results, they overestimate the data for some observables. This is particularly true for correlators that are sensitive to the nonlinear response of the medium to initial-state anisotropies in the collision system. As these new correlators provide unique information—independent of flow amplitudes—their usage in future model developments can further constrain the properties of the strongly interacting matter created in ultrarelativistic heavy-ion collisions. 
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    Free, publicly-accessible full text available June 1, 2026
  3. A<sc>bstract</sc> ThepT-differential cross section ofωmeson production in pp collisions at$$ \sqrt{s} $$ 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+ππ0decay 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. 
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    Free, publicly-accessible full text available April 1, 2026
  4. Free, publicly-accessible full text available February 1, 2026
  5. 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$$\sqrt{s}~=~13$$ s = 13  TeV from charged$$\uppi $$ π –$$\uppi $$ π 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$$\textrm{K}$$ K –$$\textrm{p}$$ p  pairs. The size of the primordial source is evaluated as a function of the transverse mass ($$m_{\textrm{T}}$$ m T ) of the pairs, leading to the observation of a common scaling for both$$\uppi $$ π –$$\uppi $$ π and$$\textrm{K}$$ K –$$\textrm{p}$$ p  , suggesting a collective effect. Further, the present results are compatible with the$$m_{\textrm{T}}$$ m T scaling of the$$\textrm{p}$$ p –$$\textrm{p}$$ p  and p$$-\Lambda $$ - Λ 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. 
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    Free, publicly-accessible full text available February 1, 2026
  6. Free, publicly-accessible full text available January 1, 2026
  7. Free, publicly-accessible full text available January 1, 2026
  8. Abstract The transverse momentum ($$p_{\textrm{T}}$$ p T ) differential production cross section of the promptly produced charm-strange baryon$$\mathrm {\Xi _{c}^{0}}$$ Ξ c 0 (and its charge conjugate$$\overline{\mathrm {\Xi _{c}^{0}}}$$ Ξ c 0 ¯ ) is measured at midrapidity via its hadronic decay into$$\mathrm{\pi ^{+}}\Xi ^{-}$$ π + Ξ - in p–Pb collisions at a centre-of-mass energy per nucleon–nucleon collision$$\sqrt{s_{\textrm{NN}}}~=~5.02$$ s NN = 5.02  TeV with the ALICE detector at the LHC. The$$\mathrm {\Xi _{c}^{0}}$$ Ξ c 0 nuclear modification factor ($$R_{\textrm{pPb}}$$ R pPb ), calculated from the cross sections in pp and p–Pb collisions, is presented and compared with the$$R_{\textrm{pPb}}$$ R pPb of$$\mathrm {\Lambda _{c}^{+}}$$ Λ c + baryons. The ratios between the$$p_{\textrm{T}}$$ p T -differential production cross section of$$\mathrm {\Xi _{c}^{0}}$$ Ξ c 0 baryons and those of$$\mathrm {D^0}$$ D 0 mesons and$$\mathrm {\Lambda _{c}^{+}}$$ Λ c + baryons are also reported and compared with results at forward and backward rapidity from the LHCb Collaboration. The measurements of the production cross section of prompt$$\Xi ^0_\textrm{c}$$ Ξ c 0 baryons are compared with a model based on perturbative QCD calculations of charm-quark production cross sections, which includes only cold nuclear matter effects in p–Pb collisions, and underestimates the measurement by a factor of about 50. This discrepancy is reduced when the data is compared with a model that includes string formation beyond leading-colour approximation or in which hadronisation is implemented via quark coalescence. The$$p_{\textrm{T}}$$ p T -integrated cross section of prompt$$\Xi ^0_\textrm{c}$$ Ξ c 0 -baryon production at midrapidity extrapolated down to$$p_{\textrm{T}}$$ p T = 0 is also reported. These measurements offer insights and constraints for theoretical calculations of the hadronisation process. Additionally, they provide inputs for the calculation of the charm production cross section in p–Pb collisions at midrapidity. 
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    Free, publicly-accessible full text available January 1, 2026