137 research outputs found

    Probing strangeness hadronization with event-by-event production of multistrange hadrons

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    This Letter presents the first measurement of event-by-event fluctuations of the net number (difference between the particle and antiparticle multiplicities) of multistrange hadrons Ξ\Xi^- and Ξ+\overline{\Xi}^+ and its correlation with the net-kaon number using the data collected by the ALICE Collaboration in pp, p-Pb, and Pb-Pb collisions at a center-of-mass energy per nucleon pair sNN=5.02 TeV\sqrt{s_{\mathrm{NN}}}=5.02\ \mathrm{TeV}. The statistical hadronization model with a correlation over three units of rapidity between hadrons having the same and opposite strangeness content successfully describes the results. On the other hand, string-fragmentation models that mainly correlate strange hadrons with opposite strange quark content over a small rapidity range fail to describe the data.This Letter presents the first measurement of event-by-event fluctuations of the net number (difference between the particle and antiparticle multiplicities) of multistrange hadrons Ξ\Xi^- and Ξ+\overline{\Xi}^+ and its correlation with the net-kaon number using the data collected by the ALICE Collaboration in pp, p-Pb, and Pb-Pb collisions at a center-of-mass energy per nucleon pair sNN=5.02 TeV\sqrt{s_{\mathrm{NN}}}=5.02\ \mathrm{TeV}. The statistical hadronization model with a correlation over three units of rapidity between hadrons having the same and opposite strangeness content successfully describes the results. On the other hand, string-fragmentation models that mainly correlate strange hadrons with opposite strange quark content over a small rapidity range fail to describe the data

    Measurement of Ωc0\Omega^0_{\rm c} baryon production and branching-fraction ratio BR(Ωc0Ωe+νe)/BR(Ωc0Ωπ+){\rm BR(\Omega^0_c \rightarrow \Omega^- e^+\nu_e)} / {\rm BR(\Omega^0_c \rightarrow \Omega^- \pi^+)} in pp collisions at s\sqrt{s} = 13 TeV

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    International audienceThe inclusive production of the charm-strange baryon Ωc0\Omega^{0}_{\rm c} is measured for the first time via its semileptonic decay into Ωe+νe\Omega^{-}\rm e^{+}\nu_{e} at midrapidity (y<0.8|y|<0.8) in proton-proton (pp) collisions at the centre-of-mass energy s=13\sqrt{s}=13 TeV with the ALICE detector at the LHC. The transverse momentum (pTp_{\rm T}) differential cross section multiplied by the branching ratio is presented in the interval 2<pT<12 GeV/c2<p_{\rm T}<12~{\rm GeV}/c. The branching-fraction ratio BR(Ωc0Ωe+νe)/BR(Ωc0Ωπ+){\rm BR}(\Omega^0_{\rm c} \rightarrow \Omega^{-}{\rm e}^{+}\nu_{\rm e})/ {\rm BR}(\Omega^0_{\rm c} \rightarrow \Omega^{-}{\pi}^{+}) is measured to be 1.12 ±\pm 0.22 (stat.) ±\pm 0.27 (syst.). Comparisons with other experimental measurements, as well as with theoretical calculations, are presented

    Exclusive four pion photoproduction in ultraperipheral Pb-Pb collisions at sNN=5.02\sqrt{s_{\rm NN}} = 5.02 TeV

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    International audienceThe intense photon fluxes from relativistic nuclei provide an opportunity to study photonuclear interactions in ultraperipheral collisions. The measurement of coherently photoproduced π+ππ+π\pi^+\pi^-\pi^+\pi^- final states in ultraperipheral Pb-Pb collisions at sNN=5.02\sqrt{s_{\mathrm{NN}}}=5.02 TeV is presented for the first time. The cross section, dσ\sigma/dyy, times the branching ratio (ρπ+π+ππ\rho\rightarrow \pi^+ \pi^+ \pi^- \pi^-) is found to be 47.8±2.3 (stat.)±7.7 (syst.)47.8\pm2.3~\rm{(stat.)}\pm7.7~\rm{(syst.)} mb in the rapidity interval y<0.5|y| < 0.5. The invariant mass distribution is not well described with a single Breit-Wigner resonance. The production of two interfering resonances, ρ(1450)\rho(1450) and ρ(1700)\rho(1700), provides a good description of the data. The values of the masses (mm) and widths (Γ\Gamma) of the resonances extracted from the fit are m1=1385±14 (stat.)±3 (syst.)m_{1}=1385\pm14~\rm{(stat.)}\pm3~\rm{(syst.)} MeV/c2c^2, Γ1=431±36 (stat.)±82 (syst.)\Gamma_{1}=431\pm36~\rm{(stat.)}\pm82~\rm{(syst.)} MeV/c2c^2, m2=1663±13 (stat.)±22 (syst.)m_{2}=1663\pm13~\rm{(stat.)}\pm22~\rm{(syst.)} MeV/c2c^2 and Γ2=357±31 (stat.)±49 (syst.)\Gamma_{2}=357 \pm31~\rm{(stat.)}\pm49~\rm{(syst.)} MeV/c2c^2, respectively. The measured cross sections times the branching ratios are compared to recent theoretical predictions

    Investigating strangeness enhancement in jet and medium via ϕ\phi(1020) production in p-Pb collisions at sNN\sqrt{s_{\rm NN}} = 5.02 TeV

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    International audienceThis work aims to differentiate strangeness produced from hard processes (jet-like) and softer processes (underlying event) by measuring the angular correlation between a high-momentum trigger hadron (h) acting as a jet-proxy and a produced strange hadron (ϕ(1020)\phi(1020) meson). Measuring hϕ-\phi correlations at midrapidity in p-Pb collisions at sNN\sqrt{s_{\rm NN}} = 5.02 TeV as a function of event multiplicity provides insight into the microscopic origin of strangeness enhancement in small collision systems. The jet-like and the underlying-event-like strangeness production are investigated as a function of event multiplicity. They are also compared between a lower and higher momentum region. The evolution of the per-trigger yields within the near-side (aligned with the trigger hadron) and away-side (in the opposite direction of the trigger hadron) jet is studied separately, allowing for the characterization of two distinct jet-like production regimes. Furthermore, the hϕ-\phi correlations within the underlying event give access to a production regime dominated by soft production processes, which can be compared directly to the in-jet production. Comparisons between hϕ-\phi and dihadron correlations show that the observed strangeness enhancement is largely driven by the underlying event, where the ϕ/h\phi/\mathrm{h} ratio is significantly larger than within the jet regions. As multiplicity increases, the fraction of the total ϕ(1020)\phi(1020) yield coming from jets decreases compared to the underlying event production, leading to high-multiplicity events being dominated by the increased strangeness production from the underlying event

    Measurement of the production cross section of prompt Ξc0\Xi^0_{\rm c} baryons in p-Pb collisions at sNN = 5.02\sqrt{s_{\mathrm{NN}}}~=~5.02 TeV

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    International audienceThe transverse momentum (pTp_{\rm T}) differential production cross section of the promptly-produced charm-strange baryon Ξc0\Xi_{\rm c}^{0} (and its charge conjugate Ξc0\overline{\Xi_{\rm c}^{0}}) is measured at midrapidity via its hadronic decay into π+Ξ{\rm \pi^{+}}\Xi^{-} in p-Pb collisions at a centre-of-mass energy per nucleon-nucleon collision sNN = 5.02\sqrt{s_{\mathrm{NN}}}~=~5.02 TeV with the ALICE detector at the LHC. The Ξc0\Xi_{\rm c}^{0} nuclear modification factor (RpPbR_{\rm pPb}), calculated from the cross sections in pp and p-Pb collisions, is presented and compared with the RpPbR_{\rm pPb} of Λc+\Lambda_{\rm c}^{+} baryons. The ratios between the pTp_{\rm T}-differential production cross section of Ξc0\Xi_{\rm c}^{0} baryons and those of D0\mathrm {D^0} mesons and Λc+\Lambda_{\rm 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 Ξc0\Xi^0_{\rm c} 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 in which hadronisation is implemented via quark coalescence. The pTp_{\rm T}-integrated cross section of prompt Ξc0\Xi^0_{\rm c}-baryon production at midrapidity extrapolated down to pTp_{\rm 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

    Measurement of the inclusive isolated-photon production cross section in pp and Pb-Pb collisions at sNN=5.02\sqrt{s_{\rm NN}}=5.02 TeV

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    International audienceThe ALICE Collaboration at the CERN LHC has measured the inclusive production cross section of isolated photons at midrapidity as a function of the photon transverse momentum (pTγp_{\rm T}^{\gamma}), in Pb-Pb collisions in different centrality intervals, and in pp collisions, at centre-of-momentum energy per nucleon pair of sNN=5.02\sqrt{s_{\mathrm{NN}}}=5.02 TeV. The photon transverse momentum range is between 10-14 and 40-140 GeV/cc, depending on the collision system and on the Pb-Pb centrality class. The result extends to lower pTγp_{\rm T}^{\gamma} than previously published results by the ATLAS and CMS experiments at the same collision energy. The covered pseudorapidity range is ηγ<0.67|\eta^{\gamma}| <0.67. The isolation selection is based on a charged particle isolation momentum threshold pTiso, ch=1.5p_{\rm T}^{\rm iso,~ch} = 1.5 GeV/cc within a cone of radii R=0.2R=0.2 and 0.40.4. The nuclear modification factor is calculated and found to be consistent with unity in all centrality classes, and also consistent with the HG-PYTHIA model, which describes the event selection and geometry biases that affect the centrality determination in peripheral Pb-Pb collisions. The measurement is compared to next-to-leading order perturbative QCD calculations and to the measurements of isolated photons and Z0^0 bosons from the CMS experiment, which are all found to be in agreement

    Particle production as a function of charged-particle flattenicity in pp collisions at s\sqrt{s} = 13 TeV

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    International audienceThis paper reports the first measurement of the transverse momentum (pTp_{\mathrm{T}}) spectra of primary charged pions, kaons, (anti)protons, and unidentified particles as a function of the charged-particle flattenicity in pp collisions at s=13\sqrt{s}=13 TeV. Flattenicity is a novel event shape observable that is measured in the pseudorapidity intervals covered by the V0 detector, 2.8<η<5.12.8<\eta<5.1 and 3.7<η<1.7-3.7<\eta<-1.7. According to QCD-inspired phenomenological models, it shows sensitivity to multiparton interactions and is less affected by biases towards larger pTp_{\mathrm{T}} due to local multiplicity fluctuations in the V0 acceptance than multiplicity. The analysis is performed in minimum-bias (MB) as well as in high-multiplicity events up to pT=20p_{\mathrm{T}}=20 GeV/cc. The event selection requires at least one charged particle produced in the pseudorapidity interval η<1|\eta|<1. The measured pTp_{\mathrm{T}} distributions, average pTp_{\mathrm{T}}, kaon-to-pion and proton-to-pion particle ratios, presented in this paper, are compared to model calculations using PYTHIA 8 based on color strings and EPOS LHC. The modification of the pTp_{\mathrm{T}}-spectral shapes in low-flattenicity events that have large event activity with respect to those measured in MB events develops a pronounced peak at intermediate pTp_{\mathrm{T}} (2<pT<82<p_{\mathrm{T}}<8 GeV/cc), and approaches the vicinity of unity at higher pTp_{\mathrm{T}}. The results are qualitatively described by PYTHIA, and they show different behavior than those measured as a function of charged-particle multiplicity based on the V0M estimator

    First measurement of Ds1(1+)(2536)+\mathrm{D_{s1}}(1^{+})(2536)^+ and Ds2(2+)(2573)+\mathrm{D_{s2}^{*}(2^{+})(2573)^+} production in proton--proton collisions at s=13\sqrt{s} = 13 TeV at the LHC

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    International audienceThe production yields of the orbitally excited charm-strange mesons Ds1(1+)(2536)+\mathrm{D_{s1}(1^{+})(2536)^+} and Ds2(2+)(2573)+\mathrm{D_{s2}^{*}(2^{+})(2573)^+} were measured for the first time in proton--proton (pp) collisions at a center-of-mass energy of s=13\sqrt{s} =13 TeV with the ALICE experiment at the LHC. The Ds1+\mathrm{D_{s1}^+} and Ds2+\mathrm{D_{s2}^{*+}} mesons were measured at midrapidity (y<0.5|y|<0.5) in minimum-bias and high-multiplicity pp collisions in the transverse-momentum interval 2<pT<242 < p_{\rm T} < 24 GeV/cc. Their production yields relative to the Ds+\mathrm{D_{s}^{+}} ground-state yield were found to be compatible between minimum-bias and high-multiplicity collisions, as well as with previous measurements in e±p\mathrm{e^\pm p} and e+e\mathrm{e^{+}e^{-}} collisions. The measured Ds1+/Ds+\mathrm{D_{s1}^+/D_{s}^{+}} and Ds2+/Ds+\mathrm{D_{s2}^{*+}/D_{s}^{+}} yield ratios are described by statistical hadronization models and can be used to tune the parameters governing the production of excited charm-strange hadrons in Monte Carlo generators, such as PYTHIA 8

    Systematic study of flow vector decorrelation in sNN=5.02\mathbf{\sqrt{\textit{s}_{_{\bf NN}}}=5.02} TeV Pb-Pb collisions

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    International audienceMeasurements of the pTp_{\rm T}-dependent flow vector fluctuations in Pb-Pb collisions at sNN=5.02 TeV\sqrt{s_{_{\rm NN}}} = 5.02~\mathrm{TeV} using azimuthal correlations with the ALICE experiment at the LHC are presented. A four-particle correlation approach [1] is used to quantify the effects of flow angle and magnitude fluctuations separately. This paper extends previous studies to additional centrality intervals and provides measurements of the pTp_{\rm T}-dependent flow vector fluctuations at sNN=5.02 TeV\sqrt{s_{_{\rm NN}}} = 5.02~\mathrm{TeV} with two-particle correlations. Significant pTp_{\rm T}-dependent fluctuations of the V2\vec{V}_{2} flow vector in Pb-Pb collisions are found across different centrality ranges, with the largest fluctuations of up to \sim15% being present in the 5% most central collisions. In parallel, no evidence of significant pTp_{\rm T}-dependent fluctuations of V3\vec{V}_{3} or V4\vec{V}_{4} is found. Additionally, evidence of flow angle and magnitude fluctuations is observed with more than 5σ5\sigma significance in central collisions. These observations in Pb-Pb collisions indicate where the classical picture of hydrodynamic modeling with a common symmetry plane breaks down. This has implications for hard probes at high pTp_{\rm T}, which might be biased by pTp_{\rm T}-dependent flow angle fluctuations of at least 23% in central collisions. Given the presented results, existing theoretical models should be re-examined to improve our understanding of initial conditions, quark--gluon plasma (QGP) properties, and the dynamic evolution of the created system
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