Dergi makalesi Açık Erişim
CERN İşbirliği
In this letter, the production of deuterons and anti-deuterons in pp collisions at $\sqrt{s}=7$ TeV is studied as a function of the charged-particle multiplicity density at mid-rapidity with the ALICE detector at the LHC. Production yields are measured at mid-rapidity in five multiplicity classes and as a function of the deuteron transverse momentum (${p}_{T}$). The measurements are discussed in the context of hadron–coalescence models. The coalescence parameter ${B}_{2}$, extracted from the measured spectra of (anti-)deuterons and primary (anti-)protons, exhibits no significant ${p}_{T}$-dependence for ${p}_{T}<3$ $\text{GeV}\phantom{\rule{-0.05em}{0ex}}/\phantom{\rule{-0.02em}{0ex}}c$, in agreement with the expectations of a simple coalescence picture. At fixed transverse momentum per nucleon, the ${B}_{2}$ parameter is found to decrease smoothly from low multiplicity pp to Pb–Pb collisions, in qualitative agreement with more elaborate coalescence models. The measured mean transverse momentum of (anti-)deuterons in pp is not reproduced by the Blast-Wave model calculations that simultaneously describe pion, kaon and proton spectra, in contrast to central Pb–Pb collisions. The ratio between the ${p}_{T}$-integrated yield of deuterons to protons, d/p, is found to increase with the charged-particle multiplicity, as observed in inelastic pp collisions at different centre-of-mass energies. The d/p ratios are reported in a wide range, from the lowest to the highest multiplicity values measured in pp collisions at the LHC.
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j.physletb.2019.05.028.pdf
md5:b8260b1739c9223ec17a7e79217cb5ae |
1.5 MB | İndir |
| Görüntülenme | 65 |
| İndirme | 27 |
| Veri hacmi | 40.7 MB |
| Tekil görüntülenme | 56 |
| Tekil indirme | 27 |