SCOAP3 Repository 5 records found  Search took 0.02 seconds. 
1. Prompt neutrinos from atmospheric charm in the general-mass variable-flavor-number scheme / Benzke, M. ; Garzelli, M. ; Kniehl, B. ; Kramer, G. ; et al
We present predictions for the prompt-neutrino flux arising from the decay of charmed mesons and baryons produced by the interactions of high-energy cosmic rays in the Earth’s atmosphere, making use of a QCD approach on the basis of the general-mass variable-flavor-number scheme for the description of charm hadroproduction at NLO, complemented by a consistent set of fragmentation functions. [...]
Published in JHEP 1712 (2017) 021 10.1007/JHEP12(2017)021 arXiv:1705.10386
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2. Study of heavy meson production in p–Pb collisions at S=5.02 TeV in the general-mass variable-flavour-number scheme / Kramer, G. ; Spiesberger, H.
We study inclusive charm and bottom production, for both D and B mesons, in p–Pb collisions at the LHC. [...]
Published in Nuclear Physics B (2017) 10.1016/j.nuclphysb.2017.10.016
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3. Inclusive photoproduction of bottom quarks for low and medium p T in the general-mass variable-flavour-number scheme / Kramer, G. ; Spiesberger, H.
We present predictions for b -quark production in photoproduction and compare with experimental data from HERA. [...]
Published in Physics letters B (2015) 10.1016/j.physletb.2015.12.056
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4. Inclusive B -meson production at small pT in the general-mass variable-flavor-number scheme / Kniehl, B. A. ; Kramer, G. ; Schienbein, I. ; Spiesberger, H.
We calculate the cross section for the inclusive production of B mesons in pp and pp¯ collisions at next-to-leading order in the general-mass variable-flavor-number scheme and show that a suitable choice of factorization scales leads to a smooth transition to the fixed-flavor-number scheme. [...]
Published in EPJC 75 (2015) 140 10.1140/epjc/s10052-015-3360-6
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5. NLO Monte Carlo predictions for heavy-quark production at the LHC: pp collisions in ALICE / M. Klasen ; C. Klein-Bösing ; K. Kovarik ; G. Kramer ; et al
Next-to-leading order (NLO) QCD predictions for the production of heavy quarks in proton-proton collisions are presented within three different approaches to quark mass, resummation and fragmentation effects. [...]
Published in JHEP 1408 (2014) 109 10.1007/JHEP08(2014)109 arXiv:1405.3083
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