Search for new phenomena with large jet multiplicities and missing transverse momentum using large-radius jets and flavour-tagging at ATLAS in 13 TeV $pp$ collisions

The ATLAS collaboration
JHEP 12 (2017) 034, 2017.

Abstract (data abstract)
CERN-LHC. A search is presented for particles that decay producing a large jet multiplicity and invisible particles. The event selection applies a veto on the presence of isolated electrons or muons and additional requirements on the number of $b$-tagged jets and the scalar sum of masses of large-radius jets. Having explored the full ATLAS 2015--2016 dataset of LHC proton--proton collisions at $\sqrt{s}$=13 TeV, which corresponds to 36.1~fb$^{-1}$ of integrated luminosity, no evidence is found for physics beyond the Standard Model.The results are interpreted in the context of simplified models inspired by R-parity-conserving and R-parity-violating supersymmetry, where gluinos are pair-produced. More generic models within the phenomenological minimal supersymmetric Standard Model are also considered.

  • Post-fit yields

    Data from Figure 4

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    Post-fit yields for each signal region in the multijets analysis. Summary of all 27 signal regions (post-fit).

  • Exclusion contour 1 (obs.)

    Data from Figure 6a

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    Observed 95% CL limit for the pMSSM grid.

  • Exclusion contour 2 (obs.)

    Data from Figure 6a

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    Observed 95% CL limit for the pMSSM grid when the signal cross section is increased by one standard deviation.

  • Exclusion contour 3 (obs.)

    Data from Figure 6a

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    Observed 95% CL limit for the pMSSM grid when the signal cross section is decreased by one standard deviation.

  • Exclusion contour 1 (exp.)

    Data from Figure 6a

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    Expected 95% CL limit for the pMSSM grid.

  • Exclusion contour 2 (exp.)

    Data from Figure 6a

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    Expected 95% CL limit for the pMSSM grid with an up variation of the uncertainties.

  • Exclusion contour 3 (exp.)

    Data from Figure 6a

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    Expected 95% CL limit for the pMSSM grid with a down variation of the uncertainties.

  • Exclusion contour 4 (obs.)

    Data from Figure 6b

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    Observed 95% CL limit for the 2Step grid.

  • Exclusion contour 5 (obs.)

    Data from Figure 6b

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    Observed 95% CL limit for the 2Step grid when the signal cross section is increased by one standard deviation.

  • Exclusion contour 6 (obs.)

    Data from Figure 6b

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    Observed 95% CL limit for the 2Step grid when the signal cross section is decreased by one standard deviation.

  • Exclusion contour 4 (exp.)

    Data from Figure 6b

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    Expected 95% CL limit for the 2Step grid.

  • Exclusion contour 5 (exp.)

    Data from Figure 6b

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    Expected 95% CL limit for the 2Step grid with an up variation of the uncertainties.

  • Exclusion contour 6 (exp.)

    Data from Figure 6b

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    Expected 95% CL limit for the 2Step grid with a down variation of the uncertainties.

  • Exclusion contour 7 (obs.)

    Data from Figure 7a

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    Observed 95% CL limit for the gtt off-shell grid.

  • Exclusion contour 8 (obs.)

    Data from Figure 7a

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    Observed 95% CL limit for the gtt off-shell grid when the signal cross section is increased by one standard deviation.

  • Exclusion contour 9 (obs.)

    Data from Figure 7a

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    Observed 95% CL limit for the gtt off-shell grid when the signal cross section is decreased by one standard deviation.

  • Exclusion contour 7 (exp.)

    Data from Figure 7a

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    Expected 95% CL limit for the gtt off-shell grid.

  • Exclusion contour 8 (exp.)

    Data from Figure 7a

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    Expected 95% CL limit for the gtt off-shell grid with an up variation of the uncertainties.

  • Exclusion contour 9 (exp.)

    Data from Figure 7a

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    Expected 95% CL limit for the gtt off-shell grid with a down variation of the uncertainties.

  • Exclusion contour 10 (obs.)

    Data from Figure 7b

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    Observed 95% CL limit for the RPV grid.

  • Exclusion contour 11 (obs.)

    Data from Figure 7b

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    Observed 95% CL limit for the RPV grid when the signal cross section is increased by one standard deviation.

  • Exclusion contour 12 (obs.)

    Data from Figure 7b

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    Observed 95% CL limit for the RPV grid when the signal cross section is decreased by one standard deviation.

  • Exclusion contour 10 (exp.)

    Data from Figure 7b

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    Expected 95% CL limit for the RPV grid.

  • Exclusion contour 11 (exp.)

    Data from Figure 7b

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    Expected 95% CL limit for the RPV grid with an up variation of the uncertainties.

  • Exclusion contour 12 (exp.)

    Data from Figure 7b

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    Expected 95% CL limit for the RPV grid with a down variation of the uncertainties.

  • Cutflow 1

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-7j80-0b...

  • Cutflow 2

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-7j80-1b...

  • Cutflow 3

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t28

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-7j80-2b...

  • Cutflow 4

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t29

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j80-0b...

  • Cutflow 5

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t30

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j80-1b...

  • Cutflow 6

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t31

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j80-2b...

  • Cutflow 7

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t32

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j80-0b...

  • Cutflow 8

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t33

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j80-1b...

  • Cutflow 9

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j80-2b...

  • Cutflow 10

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j50-0b...

  • Cutflow 11

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j50-0b...

  • Cutflow 12

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j50-1b...

  • Cutflow 13

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t38

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-8j50-2b...

  • Cutflow 14

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j50-0b...

  • Cutflow 15

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j50-0b...

  • Cutflow 16

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j50-1b...

  • Cutflow 17

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t42

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-9j50-2b...

  • Cutflow 18

    Data from Auxiliary Table 6

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    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-10j50-0b...

  • Cutflow 19

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t44

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-10j50-0b...

  • Cutflow 20

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t45

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-10j50-1b...

  • Cutflow 21

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t46

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-10j50-2b...

  • Cutflow 22

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t47

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-11j50-0b...

  • Cutflow 23

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t48

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-11j50-1b...

  • Cutflow 24

    Data from Auxiliary Table 6

    10.17182/hepdata.77893.v2/t49

    Number of signal events expected for 36.1 fb$^{-1}$ at different stages of the event selection for the signal region SR-11j50-2b...

  • N-1 SR Kinematics 1

    Data from Auxiliary Figure 11a

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j50-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 2

    Data from Auxiliary Figure 11b

    10.17182/hepdata.77893.v2/t51

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j50-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 3

    Data from Auxiliary Figure 11c

    10.17182/hepdata.77893.v2/t52

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j50-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 4

    Data from Auxiliary Figure 11d

    10.17182/hepdata.77893.v2/t53

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j50-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 5

    Data from Auxiliary Figure 11e

    10.17182/hepdata.77893.v2/t54

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j50-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 6

    Data from Auxiliary Figure 11f

    10.17182/hepdata.77893.v2/t55

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j50-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 7

    Data from Auxiliary Figure 11g

    10.17182/hepdata.77893.v2/t56

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-10j50-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 8

    Data from Auxiliary Figure 11h

    10.17182/hepdata.77893.v2/t57

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-10j50-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 9

    Data from Auxiliary Figure 11i

    10.17182/hepdata.77893.v2/t58

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-10j50-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 10

    Data from Auxiliary Figure 11j

    10.17182/hepdata.77893.v2/t59

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-11j50-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 11

    Data from Auxiliary Figure 11k

    10.17182/hepdata.77893.v2/t60

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-11j50-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 12

    Data from Auxiliary Figure 11l

    10.17182/hepdata.77893.v2/t61

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-11j50-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 13

    Data from Auxiliary Figure 12a

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-7j80-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 14

    Data from Auxiliary Figure 12b

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-7j80-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 15

    Data from Auxiliary Figure 12c

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-7j80-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 16

    Data from Auxiliary Figure 12d

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j80-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 17

    Data from Auxiliary Figure 12e

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j80-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 18

    Data from Auxiliary Figure 12f

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j80-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 19

    Data from Auxiliary Figure 12g

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j80-0b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 20

    Data from Auxiliary Figure 12h

    10.17182/hepdata.77893.v2/t69

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j80-1b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 21

    Data from Auxiliary Figure 12i

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j80-2b. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 22

    Data from Auxiliary Figure 13a

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j50-0b-MJ340. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 23

    Data from Auxiliary Figure 13b

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-8j50-0b-MJ500. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 24

    Data from Auxiliary Figure 13c

    10.17182/hepdata.77893.v2/t73

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j50-0b-MJ340. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 25

    Data from Auxiliary Figure 13d

    10.17182/hepdata.77893.v2/t74

    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-9j50-0b-MJ500. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 26

    Data from Auxiliary Figure 13e

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-10j50-0b-MJ340. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • N-1 SR Kinematics 27

    Data from Auxiliary Figure 13f

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    $E_{\mathrm{T}}^{\mathrm{miss}} / \sqrt{H_{\mathrm{T}}}$ distribution in signal region SR-10j50-0b-MJ500. Two benchmark signal models are overlaid on the plot for comparison. Labelled...

  • Template Closure 1

    Data from Auxiliary Figure 14

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    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 2

    Data from Auxiliary Figure 14

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    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 3

    Data from Auxiliary Figure 14

    10.17182/hepdata.77893.v2/t79

    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 4

    Data from Auxiliary Figure 15

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    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 5

    Data from Auxiliary Figure 15

    10.17182/hepdata.77893.v2/t81

    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 6

    Data from Auxiliary Figure 15

    10.17182/hepdata.77893.v2/t82

    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the flavour stream with...

  • Template Closure 7

    Data from Auxiliary Figure 16

    10.17182/hepdata.77893.v2/t83

    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the fat-jet stream with...

  • Template Closure 8

    Data from Auxiliary Figure 16

    10.17182/hepdata.77893.v2/t84

    Degree of multijet closure for signal and vaidation regions (prior to the leptonic background fit) for the fat-jet stream with...

  • Best-Expected SR 1

    Data from Auxiliary Figures 19/23/27

    10.17182/hepdata.77893.v2/t85

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the 2Step grid.

  • Best-Expected SR 2

    Data from Auxiliary Figures 19/23/27

    10.17182/hepdata.77893.v2/t86

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the 2Step grid.

  • Best-Expected SR 3

    Data from Auxiliary Figures 19/23/27

    10.17182/hepdata.77893.v2/t87

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the 2Step grid.

  • Best-Expected SR 4

    Data from Auxiliary Figures 20/24/28

    10.17182/hepdata.77893.v2/t88

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the pMSSM grid.

  • Best-Expected SR 5

    Data from Auxiliary Figures 20/24/28

    10.17182/hepdata.77893.v2/t89

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the pMSSM grid.

  • Best-Expected SR 6

    Data from Auxiliary Figures 20/24/28

    10.17182/hepdata.77893.v2/t90

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the pMSSM grid.

  • Best-Expected SR 7

    Data from Auxiliary Figures 21/25/29

    10.17182/hepdata.77893.v2/t91

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the RPV grid.

  • Best-Expected SR 8

    Data from Auxiliary Figures 21/25/29

    10.17182/hepdata.77893.v2/t92

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the RPV grid.

  • Best-Expected SR 9

    Data from Auxiliary Figures 21/25/29

    10.17182/hepdata.77893.v2/t93

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the RPV grid.

  • Best-Expected SR 10

    Data from Auxiliary Figures 22/26/30

    10.17182/hepdata.77893.v2/t94

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the gtt off-shell grid.

  • Best-Expected SR 11

    Data from Auxiliary Figures 22/26/30

    10.17182/hepdata.77893.v2/t95

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the gtt off-shell grid.

  • Best-Expected SR 12

    Data from Auxiliary Figures 22/26/30

    10.17182/hepdata.77893.v2/t96

    The best-expected signal region and the corresponding best-observed and best-expected CLs values for the gtt off-shell grid.

  • X-section UL 1

    Data from Auxiliary Figure 34

    10.17182/hepdata.77893.v2/t97

    95% CLs observed upper limit on model cross-section (in fb) for 2Step signal points for the best-expected signal region.

  • X-section UL 2

    Data from Auxiliary Figure 35

    10.17182/hepdata.77893.v2/t98

    95% CLs observed upper limit on model cross-section (in fb) for RPV signal points for the best-expected signal region.

  • X-section UL 3

    Data from Auxiliary Figure 36

    10.17182/hepdata.77893.v2/t99

    95% CLs observed upper limit on model cross-section (in fb) for gtt off-shell signal points for the best-expected signal region.

  • Acceptance and Efficiency 1

    Data from Auxiliary Figure 37a,e

    10.17182/hepdata.77893.v2/t100

    Performance of the SR-8j50-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 2

    Data from Auxiliary Figure 38a,e

    10.17182/hepdata.77893.v2/t101

    Performance of the SR-8j50-0b-MJ340 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 3

    Data from Auxiliary Figure 39a,e

    10.17182/hepdata.77893.v2/t102

    Performance of the SR-8j50-0b-MJ500 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 4

    Data from Auxiliary Figure 40a,e

    10.17182/hepdata.77893.v2/t103

    Performance of the SR-8j50-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 5

    Data from Auxiliary Figure 41a,e

    10.17182/hepdata.77893.v2/t104

    Performance of the SR-8j50-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 6

    Data from Auxiliary Figure 42a,e

    10.17182/hepdata.77893.v2/t105

    Performance of the SR-9j50-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 7

    Data from Auxiliary Figure 43a,e

    10.17182/hepdata.77893.v2/t106

    Performance of the SR-9j50-0b-MJ340 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 8

    Data from Auxiliary Figure 44a,e

    10.17182/hepdata.77893.v2/t107

    Performance of the SR-9j50-0b-MJ500 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 9

    Data from Auxiliary Figure 45a,e

    10.17182/hepdata.77893.v2/t108

    Performance of the SR-9j50-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 10

    Data from Auxiliary Figure 46a,e

    10.17182/hepdata.77893.v2/t109

    Performance of the SR-9j50-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 11

    Data from Auxiliary Figure 47a,e

    10.17182/hepdata.77893.v2/t110

    Performance of the SR-10j50-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 12

    Data from Auxiliary Figure 48a,e

    10.17182/hepdata.77893.v2/t111

    Performance of the SR-10j50-0b-MJ340 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 13

    Data from Auxiliary Figure 49a,e

    10.17182/hepdata.77893.v2/t112

    Performance of the SR-10j50-0b-MJ500 for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 14

    Data from Auxiliary Figure 50a,e

    10.17182/hepdata.77893.v2/t113

    Performance of the SR-10j50-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 15

    Data from Auxiliary Figure 51a,e

    10.17182/hepdata.77893.v2/t114

    Performance of the SR-10j50-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 16

    Data from Auxiliary Figure 52a,e

    10.17182/hepdata.77893.v2/t115

    Performance of the SR-11j50-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 17

    Data from Auxiliary Figure 53a,e

    10.17182/hepdata.77893.v2/t116

    Performance of the SR-11j50-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 18

    Data from Auxiliary Figure 54a,e

    10.17182/hepdata.77893.v2/t117

    Performance of the SR-11j50-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 19

    Data from Auxiliary Figure 55a,e

    10.17182/hepdata.77893.v2/t118

    Performance of the SR-7j80-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 20

    Data from Auxiliary Figure 56a,e

    10.17182/hepdata.77893.v2/t119

    Performance of the SR-7j80-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 21

    Data from Auxiliary Figure 57a,e

    10.17182/hepdata.77893.v2/t120

    Performance of the SR-7j80-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 22

    Data from Auxiliary Figure 58a,e

    10.17182/hepdata.77893.v2/t121

    Performance of the SR-8j80-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 23

    Data from Auxiliary Figure 59a,e

    10.17182/hepdata.77893.v2/t122

    Performance of the SR-8j80-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 24

    Data from Auxiliary Figure 60a,e

    10.17182/hepdata.77893.v2/t123

    Performance of the SR-8j80-2b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 25

    Data from Auxiliary Figure 61a,e

    10.17182/hepdata.77893.v2/t124

    Performance of the SR-9j80-0b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 26

    Data from Auxiliary Figure 62a,e

    10.17182/hepdata.77893.v2/t125

    Performance of the SR-9j80-1b for the 2Step grid: fractional acceptance; fractional efficiency.

  • Acceptance and Efficiency 27

    Data from Auxiliary Figure 63a,e

    10.17182/hepdata.77893.v2/t126

    Performance of the SR-9j80-2b for the 2Step grid: fractional acceptance; fractional efficiency.

Version 2 modifications: Updates to the MET significance distributions, responding to comments from the JHEP reviewers. Only plot and thumbnail updates - tables are unaffected.

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