Search for new physics in dijet angular distributions using proton-proton collisions at $\sqrt{s}=$ 13 TeV and constraints on dark matter and other models

The CMS collaboration
Eur.Phys.J.C 78 (2018) 789, 2018.

Abstract (data abstract)
CERN-LHC. Dijet angular distributions are measured in proton-proton collisions at sqrt(s)=13 TeV based on a data set corresponding to an integrated luminosity of 35.9/fb collected by the CMS detector at the CERN LHC.

  • Table 1

    Data from Figure 1a

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    Normalized dijet angular distribution for events with dijet mass > 6.0 TeV.

  • Table 2

    Data from Figure 1b

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    Normalized dijet angular distribution for events with 5.4 < dijet mass < 6.0 TeV.

  • Table 3

    Data from Figure 1c

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    Normalized dijet angular distribution for events with 4.8 < dijet mass < 5.4 TeV.

  • Table 4

    Data from Figure 2a

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    Normalized dijet angular distribution for events with 4.2 < dijet mass < 4.8 TeV.

  • Table 5

    Data from Figure 2b

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    Normalized dijet angular distribution for events with 3.6 < dijet mass < 4.2 TeV.

  • Table 6

    Data from Figure 2c

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    Normalized dijet angular distribution for events with 3.0 < dijet mass < 3.6 TeV.

  • Table 7

    Data from Figure 2d

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    Normalized dijet angular distribution for events with 2.4 < dijet mass < 3.0 TeV.

  • Table 8

    Data from Figure 3

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    The 95% CL upper limits on the quark coupling gq, as a function of mass, for an axialvector or vector...

  • Table 9

    Data from Supplementary material

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    Electroweak correction factors for events with dijet mass > 6.0 TeV computed by the authors of JHEP 11 (2012) 095...

  • Table 10

    Data from Supplementary material

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    Electroweak correction factors for events with 5.4 < dijet mass < 6.0 TeV computed by the authors of JHEP 11...

  • Table 11

    Data from Supplementary material

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    Electroweak correction factors for events with 4.8 < dijet mass < 5.4 TeV computed by the authors of JHEP 11...

  • Table 12

    Data from Supplementary material

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    Electroweak correction factors for events with 4.2 < dijet mass < 4.8 TeV computed by the authors of JHEP 11...

  • Table 13

    Data from Supplementary material

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    Electroweak correction factors for events with 3.6 < dijet mass < 4.2 TeV computed by the authors of JHEP 11...

  • Table 14

    Data from Supplementary material

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    Electroweak correction factors for events with 3.0 < dijet mass < 3.6 TeV computed by the authors of JHEP 11...

  • Table 15

    Data from Supplementary material

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    Electroweak correction factors for events with 2.4 < dijet mass < 3.0 TeV computed by the authors of JHEP 11...

  • Table 16

    Data from Supplementary material

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    Covariance matrix for 1 < CHI < 2.

  • Table 17

    Data from Supplementary material

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    Covariance matrix for 2 < CHI < 3.

  • Table 18

    Data from Supplementary material

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    Covariance matrix for 3 < CHI < 4.

  • Table 19

    Data from Supplementary material

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    Covariance matrix for 4 < CHI < 5.

  • Table 20

    Data from Supplementary material

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    Covariance matrix for 5 < CHI < 6.

  • Table 21

    Data from Supplementary material

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    Covariance matrix for 6 < CHI < 7.

  • Table 22

    Data from Supplementary material

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    Covariance matrix for 7 < CHI < 8.

  • Table 23

    Data from Supplementary material

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    Covariance matrix for 8 < CHI < 9.

  • Table 24

    Data from Supplementary material

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    Covariance matrix for 9 < CHI < 10.

  • Table 25

    Data from Supplementary material

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    Covariance matrix for 10 < CHI < 12.

  • Table 26

    Data from Supplementary material

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    Covariance matrix for 12 < CHI < 14.

  • Table 27

    Data from Supplementary material

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    Covariance matrix for 14 < CHI < 16.

  • Table 28

    Data from Figure 1a

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    NLO QCD+EW prediction and benchmark signal predictions for dijet mass > 6.0 TeV.

  • Table 29

    Data from Figure 1b

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    NLO QCD+EW prediction and benchmark signal predictions for 5.4 < dijet mass < 6.0 TeV.

  • Table 30

    Data from Figure 1c

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    NLO QCD+EW prediction and benchmark signal predictions for 4.8 < dijet mass < 5.4 TeV.

  • Table 31

    Data from Figure 2a

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    NLO QCD+EW prediction and benchmark signal predictions for 4.2 < dijet mass < 4.8 TeV.

  • Table 32

    Data from Figure 2b

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    NLO QCD+EW prediction and benchmark signal predictions for 3.6 < dijet mass < 4.2 TeV.

  • Table 33

    Data from Figure 2c

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    NLO QCD+EW prediction and benchmark signal predictions for 3.0 < dijet mass < 3.6 TeV.

  • Table 34

    Data from Figure 2d

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    NLO QCD+EW prediction and benchmark signal predictions for 2.4 < dijet mass < 3.0 TeV.

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