SCOAP3 Repository 4 records found  Search took 0.02 seconds. 
1. Search for a standard model-like Higgs boson in the mass range between 70 and 110 GeV in the diphoton final state in proton-proton collisions at s=8 and 13 TeV / Sirunyan, A.M. ; Tumasyan, A. ; Adam, W. ; Ambrogi, F. ; et al
The results of a search for a standard model-like Higgs boson in the mass range between 70 and 110 GeV decaying into two photons are presented. [...]
Published in Physics letters B (2019) 10.1016/j.physletb.2019.03.064
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2. Measurement of prompt ψ (2S) production cross sections in proton–lead and proton–proton collisions at sNN=5.02TeV / Sirunyan, A.M. ; Tumasyan, A. ; Adam, W. ; Ambrogi, F. ; et al
Measurements of prompt ψ(2S) meson production cross sections in proton–lead (pPb) and proton–proton (pp) collisions at a nucleon–nucleon center-of-mass energy of sNN=5.02TeV are reported. [...]
Published in Physics letters B 790 (2019) 509-532 10.1016/j.physletb.2019.01.058
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3. Measurement of the production cross section for single top quarks in association with W bosons in proton-proton collisions at s = 13 $$ \sqrt{s}=13 $$ TeV / Sirunyan, A. ; Tumasyan, A. ; Adam, W. ; Ambrogi, F. ; et al
A measurement is presented of the associated production of a single top quark and a W boson in proton-proton collisions at s = 13 $$ \sqrt{s}=13 $$ TeV by the CMS Collaboration at the CERN LHC. [...]
Published in JHEP 1810 (2018) 117 10.1007/JHEP10(2018)117 arXiv:1805.07399
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4. Jet properties in PbPb and pp collisions at s N N = 5.02 $$ \sqrt{s_{\mathrm{N}\;\mathrm{N}}}=5.02 $$ TeV / Sirunyan, A. ; Tumasyan, A. ; Adam, W. ; Ambrogi, F. ; et al
Modifications of the properties of jets in PbPb collisions, relative to those in pp collisions, are studied at a nucleon-nucleon center-of-mass energy of s N N = 5.02 $$ \sqrt{s_{\mathrm{N}\;\mathrm{N}}}=5.02 $$ TeV via correlations of charged particles with the jet axis in relative pseudorapidity (Δ η ), relative azimuth (Δ ϕ ), and relative angular distance from the jet axis Δ r = Δ η 2 + Δ ϕ 2 $$ \varDelta \mathrm{r}=\sqrt{{\left(\varDelta \eta \right)}^2+{\left(\varDelta \phi \right)}^2} $$ . [...]
Published in JHEP 1805 (2018) 006 10.1007/JHEP05(2018)006 arXiv:1803.00042
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