Engineering PapersβŒ• Search

Engineering topics

Bhasin, A. [Physics Department, University of Jammu] (ORCID:0000000236878179)

Publications and source records attributed to Bhasin, A. [Physics Department, University of Jammu] (ORCID:0000000236878179).

Accessing the deuteron source with pion-deuteron femtoscopy in Pb-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV

Femtoscopy of nonidentical particle pairs has been instrumental for precision measurements of both two-particle sources and the final-state interactions in high-energy elementary and heavy-ion collisions. The majority of measurements assessing the source properties are based on identical particle pairs, providing direct access to the characteristics of the single-particle source. The work in this paper demonstrates, via femtoscopy measurements of charged pion-deuteron pairs in Pb-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV, the feasibility of accessing the characteristics of the single-particle femtoscopic source by using particle pairs with large mass differences such as pions and deuterons. The first experimental results of the measurement of deuteron source sizes in ultrarelativistic heavy-ion collisions are presented. The results show good agreement with the trend derived from other charged hadrons such as pions, kaons, and protons as a function of transverse mass, indicating similar source properties.

73 NUCLEAR PHYSICS AND RADIATION PHYSICS↗

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

The first measurement of the 𝑒 + ⁒𝑒 βˆ’ pair production at midrapidity and low invariant mass in central Pb-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV at the Large Hadron Collider is presented. The yield of 𝑒 + ⁒𝑒 βˆ’ pairs is compared with a cocktail of expected hadronic decay contributions in the invariant mass (π‘šπ‘’β’π‘’) and pair transverse momentum (𝑝 T,𝑒⁒𝑒 ) ranges π‘š 𝑒⁒𝑒 < 3.5 GeV/𝑐 2 and 𝑝 T,𝑒⁒𝑒 < 8 GeV/𝑐. For 0.18 < π‘š 𝑒⁒𝑒 < 0.5 GeV/𝑐 2 the ratio of data to the cocktail of hadronic contributions amounts to 1.40 Β± 0.11⁒(stat.) Β± 0.23 ⁒(syst.) Β± 0.16⁒ (cocktail) and 1.42 Β± 0.11⁒ (stat.) Β± 0.23 (syst.)$^{+0.24}_{βˆ’0.29}$ ⁒(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+β’π‘’βˆ’ pairs from the hadronic and partonic phases. In the intermediate-mass range (1.2 < π‘š 𝑒⁒𝑒 < 2.6 GeV/𝑐 2 ), the pair transverse impact parameter of the 𝑒 + ⁒𝑒 βˆ’ pairs (DCA𝑒⁒𝑒, where β€œDCA” denotes β€œdistance of closest approach”) 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 βˆ’ pairs from $𝑐\bar{𝑐}$ and an additional prompt component. Finally, the first direct-photon measurement in the 10% most central Pb-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV is reported via the study of virtual direct photons in the transverse momentum range 1 < 𝑝 T < 5 GeV/𝑐. A model including prompt photons, as well as photons from the preequilibrium and fluid-dynamic phases, can reproduce the result, while being at the upper edge of the data uncertainties.

73 NUCLEAR PHYSICS AND RADIATION PHYSICS↗

Measurement of πœ” meson production in 𝑝⁒𝑝 and 𝑝-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV

We present the measurement of the 𝑝 T -differential production cross section of πœ” mesons in pp and 𝑝-Pb collisions at $\sqrt{s_{NN}}$ = 5.02 TeV at midrapidity by ALICE. In addition, the first measurement of the nuclear modification factor 𝑅 𝑝⁒Pb for πœ” mesons at LHC energies is presented, complementing the existing measurements of lighter neutral mesons such as the πœ‹ 0 and πœ‚. Within the measured 𝑝 T range, the 𝑅 𝑝⁒Pb of πœ” mesons is compatible with no cold nuclear matter effects within the uncertainties, consistent with previous measurements at lower energies. The πœ”/πœ‹ 0 ratio is presented for both collision systems, showing no collision system dependence within the uncertainties. The comparison to previously published πœ”/πœ‹ 0 ratios at lower and higher collision energies in pp collisions suggests a decreasing trend of the ratio above 𝑝T = 4 GeV/𝑐 with increasing collision energy. The data in both collision systems are compared to predictions from PYTHIA 8, EPOS LHC, and DPMJET event generators, revealing significant shortcomings in these models’ ability to describe the production of πœ” mesons.

73 NUCLEAR PHYSICS AND RADIATION PHYSICS↗