D + s meson production at central rapidity in proton--proton collisions at s √ =7 TeV

Files

Access status: Embargo until 2050-01-01 , 1033-main.pdf (762.58 KB)

Publication date

2012

Authors

Abelev, B.I.
Bjelogrlic, SISNI 000000041951006X
Chojnacki, M.
de Rooij, R. S.
Dubla, AndreaISNI 0000000419522765
Grelli, A.ORCID 0000-0003-0562-9820ISNI 0000000394217923
La Pointe, S.L.
Luparello, G.
Mischke, A.ISNI 0000000394607331
Nooren, GISNI 0000000390638958

Editors

Advisors

Supervisors

Document Type

Article

License

Abstract

The pT-differential inclusive production cross section of the prompt charm-strange meson D+ s in the rapidity range |y| <0.5 was measured in proton–proton collisions at √ s = 7 TeV at the LHC using the ALICE detector. The analysis was performed on a data sample of 2.98 × 108 events collected with a minimum-bias trigger. The corresponding integrated luminosity is Lint = 4.8 nb−1. Reconstructing the decay D+ s → φπ+, with φ → K−K+, and its charge conjugate, about 480 D± s mesons were counted, after selection cuts, in the transverse momentum range 2 <pT <12 GeV/c. The results are compared with predictions from models based on perturbative QCD. The ratios of the cross sections of four D meson species (namely D0, D+, D∗+ and D+ s ) were determined both as a function of pT and integrated over pT after extrapolating to full pT range, together with the strangeness suppression factor in charm fragmentation. The obtained values are found to be compatible within uncertainties with those measured by other experiments in e+e−, ep and pp interactions at various centre-of-mass energies.

Keywords

Citation

Abelev, B I, Bjelogrlic, S, Chojnacki, M, de Rooij, R S, Dubla, A, Grelli, A, La Pointe, S L, Luparello, G, Mischke, A, Nooren, G J L, Peitzmann, T, Reicher, M, Snellings, R J M, Thomas, D, van Leeuwen, M, Veldhoen, M, Verweij, M, Zhou, Y & Zyzak, M 2012, 'D + s meson production at central rapidity in proton--proton collisions at s √ =7 TeV', Physics Letters B, vol. 718, no. 2, pp. 279-294. https://doi.org/10.1016/j.physletb.2012.10.049