Search for supersymmetry in events with $b$-tagged jets and missing transverse momentum in $pp$ collisions at $\sqrt{s}=13$ TeV with the ATLAS detector

The collaboration
JHEP 11 (2017) 195, 2017.

Abstract
A search for the supersymmetric partners of the Standard Model bottom and top quarks is presented. The search uses 36.1 fb$^{-1}$ of $pp$ collision data at $\sqrt{s}=13$ TeV collected by the ATLAS experiment at the Large Hadron Collider. Direct production of pairs of bottom and top squarks ($\tilde{b}_{1}$ and $\tilde{t}_{1}$) is searched for in final states with $b$-tagged jets and missing transverse momentum. Distinctive selections are defined with either no charged leptons (electrons or muons) in the final state, or one charged lepton. The zero-lepton selection targets models in which the $\tilde{b}_{1}$ is the lightest squark and decays via $\tilde{b}_{1} \rightarrow b \tilde{\chi}^{0}_{1}$, where $\tilde{\chi}^{0}_{1}$ is the lightest neutralino. The one-lepton final state targets models where bottom or top squarks are produced and can decay into multiple channels, $\tilde{b}_{1} \rightarrow b \tilde{\chi}^{0}_{1}$ and $\tilde{b}_{1} \rightarrow t \tilde{\chi}^{\pm}_{1}$, or $\tilde{t}_{1} \rightarrow t \tilde{\chi}^{0}_{1}$ and $\tilde{t}_{1} \rightarrow b \tilde{\chi}^{\pm}_{1}$, where $\tilde{\chi}^{\pm}_{1}$ is the lightest chargino and the mass difference $m_{\tilde{\chi}^{\pm}_{1}}- m_{\tilde{\chi}^{0}_{1}}$ is set to 1 GeV. No excess above the expected Standard Model background is observed. Exclusion limits at 95\% confidence level on the mass of third-generation squarks are derived in various supersymmetry-inspired simplified models.

• #### Overview

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• #### Acceptance 1

Data from Auxiliary Figure 03a

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 2

Data from Auxiliary Figure 03b

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 3

Data from Auxiliary Figure 03c

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 4

Data from Auxiliary Figure 03d

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 5

Data from Auxiliary Figure 03e

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 6

Data from Auxiliary Figure 03f

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Acceptance 7

Data from Auxiliary Figure 04a

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Acceptance 8

Data from Auxiliary Figure 04b

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Acceptance 9

Data from Auxiliary Figure 04c

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Acceptance 10

Data from Auxiliary Figure 04d

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Acceptance 11

Data from Auxiliary Figure 04e

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Acceptance 12

Data from Auxiliary Figure 04f

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Signal acceptance (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 1

Data from Auxiliary Figure 05a

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 2

Data from Auxiliary Figure 05b

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 3

Data from Auxiliary Figure 05c

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 4

Data from Auxiliary Figure 05d

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 5

Data from Auxiliary Figure 05e

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 6

Data from Auxiliary Figure 05f

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay of the sbottom into...

• #### Efficiency 7

Data from Auxiliary Figure 06a

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 8

Data from Auxiliary Figure 06b

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 9

Data from Auxiliary Figure 06c

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 10

Data from Auxiliary Figure 06d

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 11

Data from Auxiliary Figure 06e

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Efficiency 12

Data from Auxiliary Figure 06f

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Signal efficiency (in %) in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay of the sbottom into...

• #### Best SR 1

Data from Auxiliary Figure 11a

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b1L signal region with best expected exclusion limit in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay...

• #### Best SR 2

Data from Auxiliary Figure 09a

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b0L signal region with best expected exclusion limit in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay...

• #### Best SR 3

Data from Auxiliary Figure 13a

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combined signal region with best expected exclusion limit in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the asymmetric decay...

• #### Best SR 4

Data from Auxiliary Figure 07a

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b0L signal region with best expected exclusion limit in the ( M(SBOTTOM), M(NEUTRALINO) ) mass plane for the symmetric decay...

• #### Contour 1

Data from Auxiliary Figure 07b

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Expected exclusion limit for b0L-SRA350 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 2

Data from Auxiliary Figure 07b

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Observed exclusion limit for b0L-SRA350 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 3

Data from Auxiliary Figure 09b

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Expected exclusion limit for b0L-SRA350 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 4

Data from Auxiliary Figure 09b

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Observed exclusion limit for b0L-SRA350 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 5

Data from Auxiliary Figure 07c

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Expected exclusion limit for b0L-SRA450 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 6

Data from Auxiliary Figure 07c

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Observed exclusion limit for b0L-SRA450 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 7

Data from Auxiliary Figure 09c

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Expected exclusion limit for b0L-SRA450 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 8

Data from Auxiliary Figure 09c

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Observed exclusion limit for b0L-SRA450 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 9

Data from Auxiliary Figure 07d

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Expected exclusion limit for b0L-SRA550 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 10

Data from Auxiliary Figure 07d

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Observed exclusion limit for b0L-SRA550 for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 11

Data from Auxiliary Figure 07e

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Expected exclusion limit for b0L-SRB for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 12

Data from Auxiliary Figure 07e

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Observed exclusion limit for b0L-SRB for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 13

Data from Auxiliary Figure 09d

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Expected exclusion limit for b0L-SRB for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 14

Data from Auxiliary Figure 09d

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Observed exclusion limit for b0L-SRB for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 15

Data from Auxiliary Figure 07f

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Expected exclusion limit for b0L-SRC for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 16

Data from Auxiliary Figure 07f

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Observed exclusion limit for b0L-SRC for sbottom pair production with symmetric decay into a bottom quark and a neutralino.

• #### Contour 17

Data from Figure 07a

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Expected exclusion limit for best b0L SR for sbottom pair production with symmetric decay into a bottom quark and a...

• #### Contour 18

Data from Figure 07a

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Observed exclusion limit for best b0L SR for sbottom pair production with symmetric decay into a bottom quark and a...

• #### Contour 19

Data from Auxiliary Figure 09a

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Expected exclusion limit for best b0L SR for sbottom pair production with asymmetric decay into a bottom quark and a...

• #### Contour 20

Data from Auxiliary Figure 09a

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Observed exclusion limit for best b0L SR for sbottom pair production with asymmetric decay into a bottom quark and a...

• #### Contour 21

Data from Auxiliary Figure 11b

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Expected exclusion limit for b1L-SRA300-2j for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 22

Data from Auxiliary Figure 11b

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Observed exclusion limit for b1L-SRA300-2j for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 23

Data from Auxiliary Figure 11c

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Expected exclusion limit for b1L-SRA450 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 24

Data from Auxiliary Figure 11c

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Observed exclusion limit for b1L-SRA450 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 25

Data from Auxiliary Figure 11d

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Expected exclusion limit for b1L-SRA600 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 26

Data from Auxiliary Figure 11d

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Observed exclusion limit for b1L-SRA600 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 27

Data from Auxiliary Figure 11e

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Expected exclusion limit for b1L-SRA750 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 28

Data from Auxiliary Figure 11e

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Observed exclusion limit for b1L-SRA750 for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 29

Data from Auxiliary Figure 11f

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Expected exclusion limit for b1L-SRB for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 30

Data from Auxiliary Figure 11f

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Observed exclusion limit for b1L-SRB for sbottom pair production with asymmetric decay into a bottom quark and a neutralino or...

• #### Contour 31

Data from Auxiliary Figure 11a

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Expected exclusion limit for best b1L SR for sbottom pair production with asymmetric decay into a bottom quark and a...

• #### Contour 32

Data from Auxiliary Figure 11a

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Observed exclusion limit for best b1L SR for sbottom pair production with asymmetric decay into a bottom quark and a...

• #### Contour 33

Data from Auxiliary Figure 13b

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Expected exclusion limit for A-LowMass combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 34

Data from Auxiliary Figure 13b

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Observed exclusion limit for A-LowMass combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 35

Data from Auxiliary Figure 13c

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Expected exclusion limit for A-HighMass combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 36

Data from Auxiliary Figure 13c

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Observed exclusion limit for A-HighMass combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 37

Data from Auxiliary Figure 13d

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Expected exclusion limit for B combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 38

Data from Auxiliary Figure 13d

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Observed exclusion limit for B combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 39

Data from Figure 07b

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Expected exclusion limit for best combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### Contour 40

Data from Figure 07b

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Observed exclusion limit for best combination for sbottom pair production with asymmetric decay into a bottom quark and a neutralino...

• #### SR distribution 1

Data from Figure 06a

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$m_{\mathrm{CT}}$ distribution in b0L-SRA. All selection criteria are applied, except the selection on the variable that is displayed in the...

• #### SR distribution 2

Data from Figure 06b

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$\mathrm{min[m_{T}(jet_{1-4}, E_{T}^{miss})]}$ distribution in b0L-SRB. All selection criteria are applied, except the selection on the variable that is displayed in...

• #### SR distribution 3

Data from Figure 06c

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${\cal A}$ distribution in b0L-SRC. All selection criteria are applied, except the selection on the variable that is displayed in...

• #### SR distribution 4

Data from Figure 06d

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$\mathrm{m_{bb}}$ distribution in b1L-SRA300-2j. All selection criteria are applied, except the selection on the variable that is displayed in the...

• #### SR distribution 5

Data from Figure 06e

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$\mathrm{m_{eff}}$ distribution in b1L-SRA. All selection criteria are applied, except the selection on the variable that is displayed in the...

• #### SR distribution 6

Data from Figure 06f

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$\mathrm{m_{T}}$ distribution in b1L-SRB. All selection criteria are applied, except the selection on the variable that is displayed in the...

• #### Limit on cross section 1

Data from Auxiliary Figure 08a

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Cross section excluded at 95% CL for best b0L SR as a function of the sbottom and neutralino masses, for...

• #### Limit on cross section 2

Data from Auxiliary Figure 08b

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Cross section excluded at 95% CL for b0L-SRA350 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 3

Data from Auxiliary Figure 08c

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Cross section excluded at 95% CL for b0L-SRA450 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 4

Data from Auxiliary Figure 08d

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Cross section excluded at 95% CL for b0L-SRA550 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 5

Data from Auxiliary Figure 08e

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Cross section excluded at 95% CL for b0L-SRB as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 6

Data from Auxiliary Figure 08f

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Cross section excluded at 95% CL for b0L-SRC as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 7

Data from Auxiliary Figure 10a

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Cross section excluded at 95% CL for best b0L SR as a function of the sbottom and neutralino masses, for...

• #### Limit on cross section 8

Data from Auxiliary Figure 10b

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Cross section excluded at 95% CL for b0L-SRA350 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 9

Data from Auxiliary Figure 10c

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Cross section excluded at 95% CL for b0L-SRA450 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 10

Data from Auxiliary Figure 10d

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Cross section excluded at 95% CL for b0L-SRB as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 11

Data from Auxiliary Figure 12a

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Cross section excluded at 95% CL for best b1L SR as a function of the sbottom and neutralino masses, for...

• #### Limit on cross section 12

Data from Auxiliary Figure 12b

10.17182/hepdata.79165.v2/t87

Cross section excluded at 95% CL for b1L-SRA300-2j as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 13

Data from Auxiliary Figure 12c

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Cross section excluded at 95% CL for b1L-SRA450 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 14

Data from Auxiliary Figure 12d

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Cross section excluded at 95% CL for b1L-SRA600 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 15

Data from Auxiliary Figure 12e

10.17182/hepdata.79165.v2/t90

Cross section excluded at 95% CL for b1L-SRA750 as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 16

Data from Auxiliary Figure 12f

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Cross section excluded at 95% CL for b1L-SRB as a function of the sbottom and neutralino masses, for a pair...

• #### Limit on cross section 17

Data from Auxiliary Figure 14a

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Cross section excluded at 95% CL for best combination as a function of the sbottom and neutralino masses, for a...

• #### Limit on cross section 18

Data from Auxiliary Figure 14b

10.17182/hepdata.79165.v2/t93

Cross section excluded at 95% CL for A-LowMass combination as a function of the sbottom and neutralino masses, for a...

• #### Limit on cross section 19

Data from Auxiliary Figure 14c

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Cross section excluded at 95% CL for A-HighMass combination as a function of the sbottom and neutralino masses, for a...

• #### Limit on cross section 20

Data from Auxiliary Figure 14d

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Cross section excluded at 95% CL for B combination as a function of the sbottom and neutralino masses, for a...

• #### Cutflow Table 1

Data from Auxiliary Table 2

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Cutflow table in b0L-SRA for a pair produced bottom squark of 1 TeV decaying into a 1 GeV neutralino in...

• #### Cutflow Table 2

Data from Auxiliary Table 3

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Cutflow table in b0L-SRB for a pair produced bottom squark of 700 GeV decaying into a 450 GeV neutralino in...

• #### Cutflow Table 3

Data from Auxiliary Table 4

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Cutflow table in b0L-SRC for a pair produced bottom squark of 450 GeV decaying into a 430 GeV neutralino in...

• #### Cutflow Table 4

Data from Auxiliary Table 5

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Cutflow table in b1L-SRA for a pair produced bottom squark of 700 GeV decaying into a 300 GeV neutralino in...

• #### Cutflow Table 5

Data from Auxiliary Table 6

10.17182/hepdata.79165.v2/t100

Cutflow table in b1L-SRA300-2j for a pair produced bottom squark of 700 GeV decaying into a 300 GeV neutralino in...

• #### Cutflow Table 6

Data from Auxiliary Table 7

10.17182/hepdata.79165.v2/t101

Cutflow table in b0L-SRA for a pair produced bottom squark of 700 GeV decaying into a 300 GeV neutralino in...

Version 2 modifications: bugfix in c++ script