265 research outputs found

    Diffusion and fluctuations of open charmed hadrons in an interacting hadronic medium

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    Heavy quarks are excellent probes to understand the hot and dense medium formed in ultra-relativistic collisions. In a hadronic medium, studying the transport properties, e.g. the drag (γ\gamma), momentum diffusion (B0B_{0}), and spatial diffusion (DsD_{s}) coefficients of open charmed hadrons can provide useful information about the medium. Moreover, the fluctuations of charmed hadrons can help us to locate the onset of their deconfinement. In this work, we incorporate attractive and repulsive interactions in the well-established van der Waals hadron resonance gas model (VDWHRG) and study the diffusion and fluctuations of charmed hadrons. This study helps us understand the importance of interactions in the system, which significantly affect both the diffusion and fluctuations of charmed hadrons.Comment: 11 pages and 8 captioned figures. Submitted for publicatio

    Proton number cumulants in a modified van der Waals hadron resonance gas

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    An estimate of the proton number cumulants in the hadronic matter is presented considering a van der Waals-type interaction between the constituent particles. We argue that the attractive and repulsive parameters in the VDW hadron resonance gas (VDWHRG) model change as functions of baryochemical potential (μB\mu_{B}) and temperature (TT). This, in turn, affects the estimation of thermodynamic properties and, consequently, the conserved charge fluctuations. We employ a simple parametrization to bring in the center-of-mass energy (sNN\sqrt{s_{\rm NN}}) dependence on temperature and baryochemical potential and then estimate the proton number cumulants with the modified approach. The modified van der Waals hadron resonance gas model (MVDWHRG) explains the existing experimental data very well.Comment: 9-pages and 6-captioned figures, Submitted for publicatio

    Book of Abstracts of the 2nd International Conference on Applied Mathematics and Computational Sciences (ICAMCS-2022)

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    It is a great privilege for us to present the abstract book of ICAMCS-2022 to the authors and the delegates of the event. We hope that you will find it useful, valuable, aspiring, and inspiring. This book is a record of abstracts of the keynote talks, invited talks, and papers presented by the participants, which indicates the progress and state of development in research at the time of writing the research article. It is an invaluable asset to all researchers. The book provides a permanent record of this asset. Conference Title: 2nd International Conference on Applied Mathematics and Computational SciencesConference Acronym: ICAMCS-2022Conference Date: 12-14 October 2022Conference Organizers: DIT University, Dehradun, IndiaConference Mode: Online (Virtual

    Pseudorapidity densities of charged particles with transverse momentum thresholds in pp collisions at √ s = 5.02 and 13 TeV

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    The pseudorapidity density of charged particles with minimum transverse momentum (pT) thresholds of 0.15, 0.5, 1, and 2 GeV/c is measured in pp collisions at the center of mass energies of √s=5.02 and 13 TeV with the ALICE detector. The study is carried out for inelastic collisions with at least one primary charged particle having a pseudorapidity (η) within 0.8pT larger than the corresponding threshold. In addition, measurements without pT-thresholds are performed for inelastic and nonsingle-diffractive events as well as for inelastic events with at least one charged particle having |η|2GeV/c), highlighting the importance of such measurements for tuning event generators. The new measurements agree within uncertainties with results from the ATLAS and CMS experiments obtained at √s=13TeV.

    Data-driven precision determination of the material budget in ALICE

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    International audienceThe knowledge of the material budget with a high precision is fundamental for measurements of direct photon production using the photon conversion method due to its direct impact on the total systematic uncertainty. Moreover, it influences many aspects of the charged-particle reconstruction performance. In this article, two procedures to determine data-driven corrections to the material-budget description in ALICE simulation software are developed. One is based on the precise knowledge of the gas composition in the Time Projection Chamber. The other is based on the robustness of the ratio between the produced number of photons and charged particles, to a large extent due to the approximate isospin symmetry in the number of produced neutral and charged pions. Both methods are applied to ALICE data allowing for a reduction of the overall material budget systematic uncertainty from 4.5% down to 2.5%. Using these methods, a locally correct material budget is also achieved. The two proposed methods are generic and can be applied to any experiment in a similar fashion

    Study of the p-p-K+^+ and p-p-K^- dynamics using the femtoscopy technique

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    International audienceThe interactions of kaons (K) and antikaons (K\mathrm{\overline{K}}) with few nucleons (N) were studied so far using kaonic atom data and measurements of kaon production and interaction yields in nuclei. Some details of the three-body KNN and K\mathrm{\overline{K}}NN dynamics are still not well understood, mainly due to the overlap with multi-nucleon interactions in nuclei. An alternative method to probe the dynamics of three-body systems with kaons is to study the final state interaction within triplet of particles emitted in pp collisions at the Large Hadron Collider, which are free from effects due to the presence of bound nucleons. This Letter reports the first femtoscopic study of p-p-K+^+ and p-p-K^- correlations measured in high-multiplicity pp collisions at s\sqrt{s} = 13 TeV by the ALICE Collaboration. The analysis shows that the measured p-p-K+^+ and p-p-K^- correlation functions can be interpreted in terms of pairwise interactions in the triplets, indicating that the dynamics of such systems is dominated by the two-body interactions without significant contributions from three-body effects or bound states

    Measurements of jet quenching using semi-inclusive hadron+jet distributions in pp and central Pb-Pb collisions at sNN=5.02\sqrt{s_{\rm NN}}=5.02 TeV

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    The ALICE Collaboration reports measurements of the semi-inclusive distribution of charged-particle jets recoiling from a high transverse momentum (high pTp_{\rm T}) charged hadron, in pp and central Pb-Pb collisions at center of mass energy per nucleon-nucleon collision sNN=5.02\sqrt{s_{\rm NN}}=5.02 TeV. The large uncorrelated background in central Pb-Pb collisions is corrected using a data-driven statistical approach, which enables precise measurement of recoil jet distributions over a broad range in pT,chjetp_{\rm T,ch\,jet} and jet resolution parameter RR. Recoil jet yields are reported for R=0.2R=0.2, 0.4, and 0.5 in the range 7<pT,chjet<1407 < p_{\rm T,ch\, jet} < 140 GeV/c/c and π/2<Δφ<π\pi/2<\Delta\varphi<\pi, where Δφ\Delta\varphi is the azimuthal angular separation between hadron trigger and recoil jet. The low pT,chjetp_{\rm T,ch\,jet} reach of the measurement explores unique phase space for studying jet quenching, the interaction of jets with the quark-gluonnplasma generated in high-energy nuclear collisions. Comparison of pT,chjetp_{\rm T,ch\,jet} distributions from pp and central Pb-Pb collisions probes medium-induced jet energy loss and intra-jet broadening, while comparison of their acoplanarity distributions explores in-medium jet scattering and medium response. The measurements are compared to theoretical calculations incorporating jet quenching.The ALICE Collaboration reports measurements of the semi-inclusive distribution of charged-particle jets recoiling from a high transverse momentum (high pTp_{\rm T}) charged hadron, in pp and central Pb-Pb collisions at center of mass energy per nucleon-nucleon collision sNN=5.02\sqrt{s_{\rm NN}}=5.02 TeV. The large uncorrelated background in central Pb-Pb collisions is corrected using a data-driven statistical approach, which enables precise measurement of recoil jet distributions over a broad range in pT,chjetp_{\rm T,ch\,jet} and jet resolution parameter RR. Recoil jet yields are reported for R=0.2R=0.2, 0.4, and 0.5 in the range 7<pT,chjet<1407 < p_{\rm T,ch\, jet} < 140 GeV/c/c and π/2<Δφ<π\pi/2<\Delta\varphi<\pi, where Δφ\Delta\varphi is the azimuthal angular separation between hadron trigger and recoil jet. The low pT,chjetp_{\rm T,ch\,jet} reach of the measurement explores unique phase space for studying jet quenching, the interaction of jets with the quark-gluonnplasma generated in high-energy nuclear collisions. Comparison of pT,chjetp_{\rm T,ch\,jet} distributions from pp and central Pb-Pb collisions probes medium-induced jet energy loss and intra-jet broadening, while comparison of their acoplanarity distributions explores in-medium jet scattering and medium response. The measurements are compared to theoretical calculations incorporating jet quenching

    Dielectron production in central Pb-Pb collisions at sNN\sqrt{s_\mathrm{NN}} = 5.02 TeV

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    International audienceThe first measurement of the e+^+e^- pair production at midrapidity and low invariant mass in central Pb-Pb collisions at sNN=5.02\sqrt{s_{\mathrm{NN}}}=5.02 TeV at the LHC is presented. The yield of e+^+e^- pairs is compared with a cocktail of expected hadronic decay contributions in the invariant mass (meem_{\rm ee}) and pair transverse momentum (pT,eep_{\rm T,ee}) ranges mee<3.5m_{\rm ee} < 3.5 GeV/c2/c^2 and pT,ee<8p_{\rm T,ee} < 8 GeV/c/c. For 0.18<mee<0.50.18 < m_{\rm ee} < 0.5 GeV/c2/c^2 the ratio of data to the cocktail of hadronic contributions without ρ\rho mesons amounts to 1.42±0.12 (stat.)±0.17 (syst.)±0.12 (cocktail)1.42 \pm 0.12 \ ({\rm stat.}) \pm 0.17 \ ({\rm syst.}) \pm 0.12 \ ({\rm cocktail}) and 1.44±0.12 (stat.)±0.17 (syst.)0.21+0.17 (cocktail)1.44 \pm 0.12 \ ({\rm stat.}) \pm 0.17 \ ({\rm syst.}) ^{+0.17}_{-0.21} \ ({\rm cocktail}), including or not including medium effects in the estimation of the heavy-flavor background, respectively. It is consistent with predictions from two different models for an additional contribution of thermal e+^+e^- pairs from the hadronic and partonic phases. In the intermediate-mass range (1.2<mee<2.61.2 < m_{\rm ee} < 2.6 GeV/c2/c^2), the pair transverse impact parameter of the e+^+e^- pairs (DCAee_{\rm ee}) is used for the first time in Pb-Pb collisions to separate displaced dielectrons from heavy-flavor hadron decays from a possible (thermal) contribution produced at the interaction point. The data are consistent with a suppression of e+^+e^- pairs from cc{\rm c\overline{c}} and an additional prompt component. Finally, the first direct-photon measurement in the 10% most central Pb-Pb collisions at sNN=5.02\sqrt{s_{\mathrm{NN}}}=5.02 TeV is reported via the study of virtual direct photons in the transverse momentum range 1<pT<51 < p_{\rm T} < 5 GeV/c/c. A model including prompt photons, as well as photons from the pre-equilibrium and fluid-dynamic phases, can reproduce the result, while being at the upper edge of the data uncertainties

    System size dependence of hadronic rescattering effect at LHC energies

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    International audienceThe first measurements of K(892)0\mathrm{K^{*}(892)^{0}} resonance production as a function of charged-particle multiplicity in Xe-Xe collisions at sNN=\sqrt{s_{\mathrm{NN}}}= 5.44 TeV and pp collisions at s=\sqrt{s}= 5.02 TeV using the ALICE detector are presented. The resonance is reconstructed at midrapidity (y<0.5|y|< 0.5) using the hadronic decay channel K0K±π\mathrm{K^{*0}} \rightarrow \mathrm{K^{\pm} \pi^{\mp}}. Measurements of transverse-momentum integrated yield, mean transverse-momentum, nuclear modification factor of K0\mathrm{K^{*0}}, and yield ratios of resonance to stable hadron (K0\mathrm{K^{*0}}/K) are compared across different collision systems (pp, p-Pb, Xe-Xe, and Pb-Pb) at similar collision energies to investigate how the production of K0\mathrm{K^{*0}} resonances depends on the size of the system formed in these collisions. The hadronic rescattering effect is found to be independent of the size of colliding systems and mainly driven by the produced charged-particle multiplicity, which is a proxy of the volume of produced matter at the chemical freeze-out. In addition, the production yields of K0\mathrm{K^{*0}} in Xe-Xe collisions are utilized to constrain the dependence of the kinetic freeze-out temperature on the system size using HRG-PCE model
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