63 research outputs found

    A Social Media–Based Public Health Campaign to Reduce Indoor Tanning in High-Risk Populations

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    Introduction: Indoor tanning beds cause more than 450,000 new skin cancers each year, yet their use remains common, with a global indoor tanning prevalence of 10.4%. Social media provides an opportunity for cost-effective, targeted public health messaging. We sought to direct Instagram users at high risk of indoor tanning to accurate health information about the risks of indoor tanning and to reduce indoor tanning bed use. Methods: We disseminated a public health campaign on Instagram on April 6–27, 2022 with 34 video and still-image advertisements. We had 2 target audiences at high risk of indoor tanning: women aged 18–30 years in Kentucky, Nebraska, Ohio, or Tennessee interested in indoor tanning and men aged 18–45 years in California interested in indoor tanning. To evaluate the impact of the campaign, we tracked online metrics, including website visits, and conducted an interrupted time-series analysis of foot traffic data in our target states for all tanning salons documented on SafeGraph from January 1, 2018 to 3 months after the campaign. Results: Our indoor tanning health information advertisements appeared on Instagram feeds 9.1 million times, reaching 1.06 million individuals. We received 7,004 views of our indoor tanning health information landing page (Average Time on Page of 56 seconds). We did not identify a significant impact on foot traffic data on tanning salons. Conclusions: We show the successful use of social media advertising to direct high-risk groups to online health information about indoor tanning. Future research quantifying tanning visits before and after indoor tanning interventions is needed to guide future public health efforts

    Azimuthal correlations of prompt D mesons with charged particles in pp and p–Pb collisions at sNN\sqrt{s_{NN}} = 5.02 TeV

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    International audienceThe measurement of the azimuthal-correlation function of prompt D mesons with charged particles in pp collisions at s=5.02 TeV\sqrt{s} =5.02\ \hbox {TeV} and p–Pb collisions at sNN=5.02 TeV\sqrt{s_{\mathrm{NN}}} = 5.02\ \hbox {TeV} with the ALICE detector at the LHC is reported. The D0\mathrm{D}^{0}, D+\mathrm{D}^{+} , and D+\mathrm{D}^{*+} mesons, together with their charge conjugates, were reconstructed at midrapidity in the transverse momentum interval 30.3 GeV/c3 0.3\ \hbox {GeV}/c and pseudorapidity η<0.8|\eta | < 0.8. The properties of the correlation peaks appearing in the near- and away-side regions (for Δφ0\Delta \varphi \approx 0 and Δφπ\Delta \varphi \approx \pi , respectively) were extracted via a fit to the azimuthal correlation functions. The shape of the correlation functions and the near- and away-side peak features are found to be consistent in pp and p–Pb collisions, showing no modifications due to nuclear effects within uncertainties. The results are compared with predictions from Monte Carlo simulations performed with the PYTHIA, POWHEG+PYTHIA, HERWIG, and EPOS 3 event generators

    Production of charged pions, kaons, and (anti-)protons in Pb-Pb and inelastic pppp collisions at sNN\sqrt {s_{NN}} = 5.02 TeV

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    International audienceMid-rapidity production of π±\pi^{\pm}, K±\rm{K}^{\pm} and (pˉ\bar{\rm{p}})p measured by the ALICE experiment at the LHC, in Pb-Pb and inelastic pp collisions at sNN\sqrt{s_{\rm{NN}}} = 5.02 TeV, is presented. The invariant yields are measured over a wide transverse momentum (pTp_{\rm{T}}) range from hundreds of MeV/cc up to 20 GeV/cc. The results in Pb-Pb collisions are presented as a function of the collision centrality, in the range 0-90%. The comparison of the pTp_{\rm{T}}-integrated particle ratios, i.e. proton-to-pion (p/π\pi) and kaon-to-pion (K/π\pi) ratios, with similar measurements in Pb-Pb collisions at sNN\sqrt{s_{\rm{NN}}} = 2.76 TeV show no significant energy dependence. Blast-wave fits of the pTp_{\rm{T}} spectra indicate that in the most central collisions radial flow is slightly larger at 5.02 TeV with respect to 2.76 TeV. Particle ratios (p/π\pi, K/π\pi) as a function of pTp_{\rm{T}} show pronounced maxima at pTp_{\rm{T}} \approx 3 GeV/cc in central Pb-Pb collisions. At high pTp_{\rm{T}}, particle ratios at 5.02 TeV are similar to those measured in pp collisions at the same energy and in Pb-Pb collisions at sNN\sqrt{s_{\rm{NN}}} = 2.76 TeV. Using the pp reference spectra measured at the same collision energy of 5.02 TeV, the nuclear modification factors for the different particle species are derived. Within uncertainties, the nuclear modification factor is particle species independent for high pTp_{\rm{T}} and compatible with measurements at sNN\sqrt{s_{\rm{NN}}} = 2.76 TeV. The results are compared to state-of-the-art model calculations, which are found to describe the observed trends satisfactorily

    Multiplicity dependence of (multi-)strange hadron production in proton-proton collisions at s\sqrt{s} = 13 TeV

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    The production rates and the transverse momentum distribution of strange hadrons at mid-rapidity (y<0.5\left| y\right| < 0.5) are measured in proton-proton collisions at s\sqrt{s} = 13 TeV as a function of the charged particle multiplicity, using the ALICE detector at the LHC. The production rates of KS0\mathrm{K}^{0}_{S}, Λ\Lambda , Ξ\Xi , and Ω\Omega increase with the multiplicity faster than what is reported for inclusive charged particles. The increase is found to be more pronounced for hadrons with a larger strangeness content. Possible auto-correlations between the charged particles and the strange hadrons are evaluated by measuring the event-activity with charged particle multiplicity estimators covering different pseudorapidity regions. When comparing to lower energy results, the yields of strange hadrons are found to depend only on the mid-rapidity charged particle multiplicity. Several features of the data are reproduced qualitatively by general purpose QCD Monte Carlo models that take into account the effect of densely-packed QCD strings in high multiplicity collisions. However, none of the tested models reproduce the data quantitatively. This work corroborates and extends the ALICE findings on strangeness production in proton-proton collisions at 7 TeV

    Measurement of the low-energy antideuteron inelastic cross section

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    In this Letter, we report the first measurement of the inelastic cross section for antideuteron-nucleus interactions at low particle momenta, covering a range of 0.3 ≤ p < 4 GeV/c. The measurement is carried out using p-Pb collisions at a center-of-mass energy per nucleon–nucleon pair of sNN\sqrt{s_{\rm NN}} = 5.02 TeV, recorded with the ALICE detector at the CERN LHC and utilizing the detector material as an absorber for antideuterons and antiprotons. The extracted raw primary antiparticle-to-particle ratios are compared to the results from detailed ALICE simulations based on the geant4 toolkit for the propagation of (anti)particles through the detector material. The analysis of the raw primary (anti)proton spectra serves as a benchmark for this study, since their hadronic interaction cross sections are well constrained experimentally. The first measurement of the inelastic cross section for antideuteron-nucleus interactions averaged over the ALICE detector material with atomic mass numbers ⟨A⟩ = 17.4 and 31.8 is obtained. The measured inelastic cross section points to a possible excess with respect to the Glauber model parametrization used in geant4 in the lowest momentum interval of 0.3 ≤ p < 0.47 GeV/c up to a factor 2.1. This result is relevant for the understanding of antimatter propagation and the contributions to antinuclei production from cosmic ray interactions within the interstellar medium. In addition, the momentum range covered by this measurement is of particular importance to evaluate signal predictions for indirect dark-matter searches

    Longitudinal and azimuthal evolution of two-particle transverse momentum correlations in Pb-Pb collisions at sNN=2.76TeV\sqrt{s_{\rm{NN}}} = 2.76 TeV

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    This paper presents the first measurements of the charge independent (CI) and charge dependent (CD) two-particle transverse momentum correlators G2CI and G2CD in Pb–Pb collisions at sNN=2.76TeV by the ALICE collaboration. The two-particle transverse momentum correlator G2 was introduced as a measure of the momentum current transfer between neighboring system cells. The correlators are measured as a function of pair separation in pseudorapidity (Δ η ) and azimuth (Δ φ ) and as a function of collision centrality. From peripheral to central collisions, the correlator G2CI exhibits a longitudinal broadening while undergoing a monotonic azimuthal narrowing. By contrast, G2CD exhibits a narrowing along both dimensions. These features are not reproduced by models such as HIJING and AMPT. However, the observed narrowing of the correlators from peripheral to central collisions is expected to result from the stronger transverse flow profiles produced in more central collisions and the longitudinal broadening is predicted to be sensitive to momentum currents and the shear viscosity per unit of entropy density η/s of the matter produced in the collisions. The observed broadening is found to be consistent with the hypothesized lower bound of η/s and is in qualitative agreement with values obtained from anisotropic flow measurements.This paper presents the first measurements of the charge independent (CI) and charge dependent (CD) two-particle transverse momentum correlators G2CIG_{2}^{\rm CI} and G2CDG_{2}^{\rm CD} in Pb--Pb collisions at \sqrt{s_{\text{NN}}} = 2.76\;\text{\TeVe} by the ALICE collaboration. The two-particle transverse momentum correlator G2G_{2} was introduced as a measure of the momentum current transfer between neighbouring system cells. The correlators are measured as a function of pair separation in pseudorapidity (Δη\Delta \eta) and azimuth (Δφ\Delta \varphi) and as a function of collision centrality. From peripheral to central collisions, the correlator G2CIG_{2}^{\rm CI} exhibits a longitudinal broadening while undergoing a monotonic azimuthal narrowing. By contrast, G2CDG_{2}^{\rm CD} exhibits a narrowing along both dimensions. These features are not reproduced by models such as HIJING and AMPT. However, the observed narrowing of the correlators from peripheral to central collisions is expected to result from the stronger transverse flow profiles produced in more central collisions and the longitudinal broadening is predicted to be sensitive to momentum currents and the shear viscosity per unit of entropy density η/s\eta/s of the matter produced in the collisions. The observed broadening is found to be consistent with the hypothesized lower bound of η/s\eta/s and is in qualitative agreement with values obtained from anisotropic flow measurements

    Λ3H^3_\Lambda\mathrm{H} and Λˉ3H^3_{\bar{\Lambda}}\mathrm{\overline{H}} lifetime measurement in Pb-Pb collisions at sNN=\sqrt{s_{\mathrm{NN}}} = 5.02 TeV via two-body decay

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    International audienceAn improved value for the lifetime of the (anti-)hypertriton has been obtained using the data sample of Pb–Pb collisions at sNN=5.02 TeV collected by the ALICE experiment at the LHC. The (anti-)hypertriton has been reconstructed via its charged two-body mesonic decay channel and the lifetime has been determined from an exponential fit to the d N /d( ct ) spectrum. The measured value, τ=242−38+34 (stat.) ± 17 (syst.) ps, is compatible with representative theoretical predictions, thus contributing to the solution of the longstanding hypertriton lifetime puzzle

    Evidence of rescattering effect in Pb-Pb collisions at the LHC through production of K(892)0\rm{K}^{*}(892)^{0} and ϕ(1020)\phi(1020) mesons

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    Measurements of K^*(892)0^0 and ϕ(1020) resonance production in Pb–Pb and pp collisions at sNN\sqrt{s_{\rm NN}} = 5.02 TeV with the ALICE detector at the Large Hadron Collider are reported. The resonances are measured at midrapidity (|y| < 0.5) via their hadronic decay channels and the transverse momentum (pTp_{\rm T}) distributions are obtained for various collision centrality classes up to pTp_{\rm T} = 20 GeV/c . The pTp_{\rm T}-integrated yield ratio K^*(892)0^0/K in Pb–Pb collisions shows significant suppression relative to pp collisions and decreases towards more central collisions. In contrast, the ϕ(1020)/K ratio does not show any suppression. Furthermore, the measured K^*(892)0^0/K ratio in central Pb–Pb collisions is significantly suppressed with respect to the expectations based on a thermal model calculation, while the ϕ(1020)/K ratio agrees with the model prediction. These measurements are an experimental demonstration of rescattering of K^*(892)0^0 decay products in the hadronic phase of the collisions. The K^*(892)0^0/K yield ratios in Pb–Pb and pp collisions are used to estimate the time duration between chemical and kinetic freeze-out, which is found to be ∼ 4–7 fm/c for central collisions. The pTp_{\rm T}-differential ratios of K^*(892)0^0/K, ϕ(1020)/K, K^*(892)0^0/ π , ϕ(1020)/π , p/K^*(892)0^0 and p/ϕ(1020) are also presented for Pb–Pb and pp collisions at sNN\sqrt{s_{\rm NN}} = 5.02 TeV. These ratios show that the rescattering effect is predominantly a low-pTp_{\rm T} phenomenon

    Publisher Correction: Unveiling the strong interaction among hadrons at the LHC

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    Correction to: Nature https://doi.org/10.1038/s41586-020-3001-6Published online 09 December 2020 In Fig. 1c of this Article, owing to an error during the production process, the equation incorrectly began ‘C(k*, r*) = …’ instead of ‘C(k*) = …’. In addition, in affiliation 71 ‘Dipartimento di Fisica dell’Università degli studi di Bari Aldo Moro’ has been corrected to read ‘Dipartimento di Fisica dell’Università degli studi di Cagliari’. The original Article has been corrected online

    Multiplicity dependence of π, K, and p production in pp collisions at √s = 13 TeV

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    This paper presents the measurements of π±, K±, p and p¯ transverse momentum (pT) spectra as a function of charged-particle multiplicity density in proton-proton (pp) collisions at s√ = 13 TeV with the ALICE detector at the LHC. Such study allows us to isolate the center-of-mass energy dependence of light-flavour particle production. The measurements reported here cover a pT range from 0.1 GeV/c to 20 GeV/c and are done in the rapidity interval |y|<0.5. The pT-differential particle ratios exhibit an evolution with multiplicity, similar to that observed in pp collisions at s√ = 7 TeV, which is qualitatively described by some of the hydrodynamical and pQCD-inspired models discussed in this paper. Furthermore, the pT-integrated hadron-to-pion yield ratios measured in pp collisions at two different center-of-mass energies are consistent when compared at similar multiplicities. This also extends to strange and multi-strange hadrons, suggesting that, at LHC energies, particle hadrochemistry scales with particle multiplicity the same way under different collision energies and colliding systems
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