Measurement of jet activity produced in top-quark events with an electron, a muon and two $b$-tagged jets in the final state in $pp$ collisions at $\sqrt{s}=13$ TeV with the ATLAS detector

The ATLAS collaboration
Eur.Phys.J.C 77 (2017) 220, 2017.

Abstract (data abstract)
CERN-LHC, ATLAS. Measurement of jet activity in top-quark pair events produced in proton proton collisions at 13 TeV with 3.2fb-1 of data measured in 2015. Events are chosen by requiring an opposite-charge electron-muon pair and two b-tagged jets in the final state. Normalised differential cross sections are presented.

  • Figure 4a

    Data from Figure 4a, page 20 in preprint

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    Multiplicity of additional jets with pt>25GeV

  • Figure 4b

    Data from Figure 4b, page 20 in preprint

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    Multiplicity of additional jets with pt>40GeV

  • Figure 4c

    Data from Figure 4c, page 20 in preprint

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    Multiplicity of additional jets with pt>60GeV

  • Figure 4d

    Data from Figure 4d, page 20 in preprint

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    Multiplicity of additional jets with pt>80GeV

  • Figure 6a

    Data from Figure 6a

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    Transverse momentum of leading b-jet

  • Figure 6b

    Data from Figure 6b

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    Transverse momentum of sub-leading b-jet

  • Figure 6c

    Data from Figure 6c

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    Transverse momentum of leading (highest pt) additional jet

  • Figure 9a

    Data from Figure 9a, page 27 in preprint

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    Measured Gap fraction within |y|<0.8 as a function of Q0

  • Figure 9b

    Data from Figure 9b, page 27 in preprint

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    Measured Gap fraction within 0.8<|y|<1.5 as a function of Q0

  • Figure 9c

    Data from Figure 9c, page 27 in preprint

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    Measured Gap fraction within 1.5<|y|<2.1 as a function of Q0

  • Figure 9d

    Data from Figure 9d, page 27 in preprint

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    Measured Gap fraction within |y|<2.1 as a function of Q0

  • Figure 14a

    Data from Figure 14a

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    Measured Gap fraction within |y|<2.1 as a function of Q0 for invariant mass region m_{emubb} < 300GeV

  • Figure 14b

    Data from Figure 14b

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    Measured Gap fraction within |y|<2.1 as a function of Q0 for invariant mass region 300 GeV < m_{emubb} < 425GeV

  • Figure 14c

    Data from Figure 14c

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    Measured Gap fraction within |y|<2.1 as a function of Q0 for invariant mass region 425 GeV< m_{emubb} < 600GeV

  • Figure 14d

    Data from Figure 14d

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    Measured Gap fraction within |y|<2.1 as a function of Q0 for invariant mass region m_{emubb} > 600GeV

  • Figure aux 13a

    Data from Figure 13a in auxiliary material and Figure 11a in main paper

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    Measured Gap fraction within |y|<0.8 as a function of QSUM

  • Figure aux 13b

    Data from Figure 13b in auxiliary material

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    Measured Gap fraction within 0.8<|y|<1.5 as a function of QSUM

  • Figure aux 13c

    Data from Figure 13c in auxiliary material

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    Measured Gap fraction within 1.5<|y|<2.1 as a function of QSUM

  • Figure aux 13d

    Data from Figure 13d in auxiliary material and Figure 11b in main paper

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    Measured Gap fraction within |y|<2.1 as a function of QSUM

  • Figure aux 18a

    Data from Figure 18a in auxiliary material

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    Measured Gap fraction within |y|<2.1 as a function of QSUM for invariant mass region m_{emubb} < 300GeV

  • Figure aux 18b

    Data from Figure 18b in auxiliary material

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    Measured Gap fraction within |y|<2.1 as a function of QSUM for invariant mass region 300 GeV < m_{emubb} < 425...

  • Figure aux 18c

    Data from Figure 18c in auxiliary material

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    Measured Gap fraction within |y|<2.1 as a function of QSUM for invariant mass region 425GeV< m_{emubb} < 600GeV

  • Figure aux 18d

    Data from Figure 18d in auxiliary material

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    Measured Gap fraction within |y|<2.1 as a function of QSUM for invariant mass region m_{emubb} > 600GeV

Version 2 modifications: Updated bin boundaries for highest bin.

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