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CMS-PAS-HIN-18-012
Production of prompt and nonprompt $\mathrm{J}/\psi$ mesons in jets in pp collisions at $\sqrt{s} = $ 5.02 TeV
Abstract: The fragmentation of jets containing a $\mathrm{J}/\psi$ meson is studied in low pile-up pp data recorded in 2015, at a center-of-mass energy of $\sqrt{s} = $ 5.02 TeV. The fraction of the jet transverse momentum $p_{\rm T,jet}$ taken by the $\mathrm{J}/\psi$ is measured for both prompt and nonprompt $\mathrm{J}/\psi$ mesons. The value of $p_{\rm T,jet}$ is restricted to the range of 25-35 GeV. The $\mathrm{J}/\psi$ mesons are measured above 3 and 6.5 GeV, in the endcap and barrel regions of the CMS detector, respectively. Whereas the results for nonprompt $\mathrm{J}/\psi$ are well-modeled by simulations using a Monte Carlo generator, the prompt $\mathrm{J}/\psi$ are found to be accompanied by a larger level of jet activity. The fraction of $\mathrm{J}/\psi$ mesons that are found to be inside a jet within the $p_{\rm T,jet}$ selection is also reported, and found to be larger than simulation, for both prompt and nonprompt $\mathrm{J}/\psi$.
Figures Summary Additional Figures References CMS Publications
Figures

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Figure 1:
Invariant mass spectrum of $ {\mu ^+\mu ^-} $ pairs (left) and pseudo-proper decay length distribution (right) in pp collisions for 0 $ < |y| < $ 1.6, 6.5 $ < {p_{\mathrm {T}}} < $ 35.0 GeV. The result of the fit described in the text is also shown.

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Figure 1-a:
Invariant mass spectrum of $ {\mu ^+\mu ^-} $ pairs in pp collisions for 0 $ < |y| < $ 1.6, 6.5 $ < {p_{\mathrm {T}}} < $ 35.0 GeV. The result of the fit described in the text is also shown.

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Figure 1-b:
Pseudo-proper decay length distribution in pp collisions for 0 $ < |y| < $ 1.6, 6.5 $ < {p_{\mathrm {T}}} < $ 35.0 GeV. The result of the fit described in the text is also shown.

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Figure 2:
The four-dimensional detector-response matrices for prompt (left) and nonprompt $ \mathrm{J}/\psi $ (right), as a function of jet ${p_{\mathrm {T}}}$ and $z$. The colors represent the bin-to-bin migration probabilities ranging from 0 (light yellow) to 1 (dark brown).

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Figure 2-a:
The four-dimensional detector-response matrices for prompt $ \mathrm{J}/\psi $, as a function of jet ${p_{\mathrm {T}}}$ and $z$. The colors represent the bin-to-bin migration probabilities ranging from 0 (light yellow) to 1 (dark brown).

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Figure 2-b:
The four-dimensional detector-response matrices for nonprompt $ \mathrm{J}/\psi $, as a function of jet ${p_{\mathrm {T}}}$ and $z$. The colors represent the bin-to-bin migration probabilities ranging from 0 (light yellow) to 1 (dark brown).

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Figure 3:
Self-normalized prompt (left) and nonprompt $z$ distributions in the rapidity range $|y| < $ 1.6, for pp data and PYTHIA 8. For the nonprompt case, the $z$ distribution of the parent b hadron is also shown.

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Figure 3-a:
Self-normalized prompt $z$ distributions in the rapidity range $|y| < $ 1.6, for pp data and PYTHIA 8.

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Figure 3-b:
Self-normalized nonprompt $z$ distributions in the rapidity range $|y| < $ 1.6, for pp data and PYTHIA 8. The $z$ distribution of the parent b hadron is also shown.

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Figure 4:
Self-normalized prompt (left) and nonprompt (right) $z$ distributions in the rapidity range 1.6 $ < |y| < 2.4$, for pp data and PYTHIA 8. For the nonprompt case, the $z$ distribution of the parent b hadron is also shown.

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Figure 4-a:
Self-normalized prompt $z$ distributions in the rapidity range 1.6 $ < |y| < 2.4$, for pp data and PYTHIA 8.

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Figure 4-b:
Self-normalized nonprompt $z$ distributions in the rapidity range 1.6 $ < |y| < 2.4$, for pp data and PYTHIA 8. The $z$ distribution of the parent b hadron is also shown.

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Figure 5:
Left: The fraction of prompt and nonprompt $ \mathrm{J}/\psi $ in jets of 25 $ < {p_{\mathrm {T}}} < $ 35 GeV in pp data and in PYTHIA 8, compared to the total number of $ \mathrm{J}/\psi $ in the relevant the ${p_{\mathrm {T}}}$ interval, as indicated on the Figure. Right: The ratio of these $ \mathrm{J}/\psi $ -in-jet fractions in data compared to simulation for prompt and nonprompt $ \mathrm{J}/\psi $.

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Figure 5-a:
The fraction of prompt and nonprompt $ \mathrm{J}/\psi $ in jets of 25 $ < {p_{\mathrm {T}}} < $ 35 GeV in pp data and in PYTHIA 8, compared to the total number of $ \mathrm{J}/\psi $ in the relevant the ${p_{\mathrm {T}}}$ interval, as indicated on the Figure.

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Figure 5-b:
The ratio of these $ \mathrm{J}/\psi $ -in-jet fractions in data compared to simulation for prompt and nonprompt $ \mathrm{J}/\psi $.
Summary
In this analysis, the self-normalized $z$ distributions for $\mathrm{J}/\psi$ mesons in jets of 25 $ < {p_{\mathrm{T}}} < $ 35 GeV, for both prompt and nonprompt $\mathrm{J}/\psi$ production, were reported. The distributions are presented above a lower threshold of 3 and 6.5 GeV, in the endcap (1.6 $ < |y| < $ 2.4) and barrel ($|y| < $ 1.6) regions of the CMS detector, respectively. These results confirm the findings of LHCb [8], albeit in a different rapidity range and ${\sqrt{s}} $, namely that the nonprompt $ \mathrm{J}/\psi $ production is reasonably well modeled by simulation, in this case PYTHIA 8, but that the prompt $ \mathrm{J}/\psi $ production is qualiltatively different than predicted. Prompt $ \mathrm{J}/\psi $ in jets tend to carry a smaller fraction of the jet momentum, indicating that they are less isolated than suggested by production models. In addition, we also report the fraction of the $\mathrm{J}/\psi$ mesons in jets, for jets in the same window of ${p_{\mathrm{T}}}$ (25-35 GeV), and for $\mathrm{J}/\psi$ meson above aforementioned lower $ {p_{\mathrm{T}}} $ thresholds. This additional information should provide further constraints on models of $ \mathrm{J}/\psi $ production.
Additional Figures

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Additional Figure 1:
The fraction of prompt $ \mathrm{J}/\psi $ in jets of 25 $ < {p_{\mathrm {T}}} < $ 35 GeV in pp data and in PYTHIA 8, compared to the total number of $ \mathrm{J}/\psi $ in the relevant the $ {p_{\mathrm {T}}} $ interval, as indicated on the Figure.

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Additional Figure 2:
Data/MC ratio of the $ \mathrm{J}/\psi $ -in-jet fraction for prompt $ \mathrm{J}/\psi $.

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Additional Figure 3:
The fraction of prompt $ \mathrm{J}/\psi $ in jets of 25 $ < {p_{\mathrm {T}}} < $ 35 GeV in pp data and in PYTHIA 8, compared to the total number of $ \mathrm{J}/\psi $ in the relevant the $ {p_{\mathrm {T}}} $ interval, as indicated on the Figure.

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Additional Figure 4:
Data/MC ratio of the $ \mathrm{J}/\psi $ -in-jet fraction for nonprompt $ \mathrm{J}/\psi $.
References
1 A. Andronic et al. Heavy-flavour and quarkonium production in the LHC era: from proton–proton to heavy-ion collisions EPJC 76 (2016) 107 1506.03981
2 N. Brambilla et al. Heavy quarkonium: progress, puzzles, and opportunities EPJC 71 (2011) 1534 1010.5827
3 ALICE Collaboration $ \mathrm{J}/\psi $ polarization in pp collisions at $ \sqrt{s} = $ 7 TeV PRL 108 (2011) 082001 1111.1630
4 CMS Collaboration Measurement of the prompt $ \mathrm{J}/\psi $ and $ \psi' $ polarizations in pp collisions at $ \sqrt{s} = $ 7 TeV PLB 727 (2013) 381 CMS-BPH-13-003
1307.6070
5 LHCb Collaboration Measurement of $ \mathrm{J}/\psi $ polarization in pp collisions at $ \sqrt{s} = $ 7 TeV EPJC 73 (2013) 2631 1307.6379
6 F. Arleo Quenching of Hadron Spectra in Heavy Ion Collisions at the LHC PRL 119 (2017) 062302 1703.10852
7 M. Spousta On similarity of jet quenching and charmonia suppression PLB 767 (2017) 10 1606.00903
8 LHCb Collaboration Study of $ \mathrm{J}/\psi $ production in jets PRL 118 (2017), no. 19, 192001 1701.05116
9 CMS Collaboration The CMS trigger system JINST 12 (2017) P01020 CMS-TRG-12-001
1609.02366
10 CMS Collaboration The CMS experiment at the CERN LHC JINST 3 (2008) S08004 CMS-00-001
11 CMS Collaboration Description and performance of track and primary-vertex reconstruction with the CMS tracker JINST 9 (2014) P10009
12 M. Cacciari, G. P. Salam, and G. Soyez The anti-$ k_t $ jet clustering algorithm JHEP 04 (2008) 063 0802.1189
13 M. Cacciari, G. P. Salam, and G. Soyez FastJet user manual EPJC 72 (2012) 1896
14 T. Sjostrand et al. An Introduction to PYTHIA 8.2 CPC 191 (2015) 159 arXiv:1410.3012
15 GEANT Collaboration GEANT4 --- A simulation toolkit NIMA 506 (2003) 250
16 D. J. Lange The EvtGen particle decay simulation package NIMA 462 (2001) 152
17 CMS Collaboration Performance of CMS muon reconstruction in pp collision events at $ \sqrt{s} = $ 7 TeV JINST 7 (2012) P10002 CMS-MUO-10-004
1206.4071
18 CMS Collaboration Particle-flow reconstruction and global event description with the cms detector JINST 12 (2017) P10003 CMS-PRF-14-001
1706.04965
19 Particle Data Group Collaboration Review of Particle Physics CPC 40 (2016) 100001
20 CMS Collaboration Jet energy scale and resolution in the CMS experiment in pp collisions at 8 TeV JINST 12 (2017) P02014 CMS-JME-13-004
1607.03663
21 ALEPH Collaboration Measurement of the anti-B$ ^{0} $ and B$ ^{-} $ meson lifetimes PLB 307 (1993) 194, . [Erratum: Phys. Lett. B 325 (1994) 537]
22 M. J. Oreglia A Study of the Reactions $ \psi' \rightarrow \gamma \gamma \psi $ 1980
23 M. Pivk and F. Le Diberder $ {}_{s}\mathcal{P}lot $: a statistical tool to unfold data distributions NIMA 555 (2005) 356 physics/0402083
24 CMS Collaboration Measurement of prompt and nonprompt charmonium suppression in PbPb collisions at 5.02 TeV Submitted to: EPJC (2017) CMS-HIN-16-025
1712.08959
25 CMS Collaboration Measurements of inclusive $ W $ and $ Z $ cross sections in pp collisions at $ \sqrt{s}= $ 7 TeV JHEP 01 (2011) 080 CMS-EWK-10-002
1012.2466
26 CMS Collaboration Suppression of non-prompt $ \mathrm{J}/\psi, $ prompt $ \mathrm{J}/\psi, $ and $ \Upsilon\text{1S} $ in PbPb collisions at $ {\sqrt {\smash [b]{s_{_{\mathrm {NN}}}}}} = $ 2.76 TeV JHEP 05 (2012) 063 CMS-HIN-10-006
1201.5069
27 G. D'Agostini A multidimensional unfolding method based on Bayes theorem NIMA 362 (1995) 487
28 T. Adye Unfolding algorithms and tests using roounfold 1105.1160
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