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Search for supersymmetry in final states with jets, missing transverse momentum and one isolated lepton in $\sqrt{s} = 7$ TeV pp collisions using 1 $fb^{-1}$ of ATLAS data

The ATLAS collaboration
Phys.Rev. D85 (2012) 012006, 2012

Abstract (data abstract)
CERN-LHC. Study of final states containing jets, missing transverse momentum and one isolated electron or muon in proton-proton collisions at a centre-of-mass energy of 7 TeV. The data sample used, with an integrated lumninosity of 1.04 fb-1 was collected in the first half of 2011. The analysis uses four distinct signal regions with either a minimum of 3 or 4 jets and variations on the missing transverse momentum cuts designed to optimize searches for various SUSY models.

  • Table 1

    Data from F 1A

    10.17182/hepdata.58800.v1/t1

    Missing transverse energy after requiring one electron with pT>25 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 2

    Data from F 1B

    10.17182/hepdata.58800.v1/t2

    Missing transverse energy after requiring one muon with pT>20 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 3

    Data from F 1C

    10.17182/hepdata.58800.v1/t3

    Transverse mass after requiring one electron with pT>25 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 4

    Data from F 1D

    10.17182/hepdata.58800.v1/t4

    Transverse mass after requiring one muon with pT>20 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 5

    Data from F 1E

    10.17182/hepdata.58800.v1/t5

    Effective mass after requiring one electron with pT>25 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 6

    Data from F 1F

    10.17182/hepdata.58800.v1/t6

    Effective mass after requiring one muon with pT>20 GeV, at least three jets with pT>60,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 7

    Data from F 2A

    10.17182/hepdata.58800.v1/t7

    Missing transverse energy after requiring one electron with pT>25 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 8

    Data from F 2B

    10.17182/hepdata.58800.v1/t8

    Missing transverse energy after requiring one muon with pT>20 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 9

    Data from F 2C

    10.17182/hepdata.58800.v1/t9

    Transverse mass after requiring one electron with pT>25 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 10

    Data from F 2D

    10.17182/hepdata.58800.v1/t10

    Transverse mass after requiring one muon with pT>20 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 11

    Data from F 2E

    10.17182/hepdata.58800.v1/t11

    Effective mass after requiring one electron with pT>25 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 12

    Data from F 2F

    10.17182/hepdata.58800.v1/t12

    Effective mass after requiring one muon with pT>20 GeV, at least four jets with pT>60,25,25,25 GeV and dphi(jets,Etmiss)>0.2.

  • Table 13

    Data from F 3A

    10.17182/hepdata.58800.v1/t13

    Effective mass in the electron plus three jets W+jets control region.

  • Table 14

    Data from F 3B

    10.17182/hepdata.58800.v1/t14

    Effective mass in the muon plus three jets W+jets control region.

  • Table 15

    Data from F 3C

    10.17182/hepdata.58800.v1/t15

    Effective mass in the electron plus three jets top control region.

  • Table 16

    Data from F 3D

    10.17182/hepdata.58800.v1/t16

    Effective mass in the muon plus three jets top control region.

  • Table 17

    Data from F 3E

    10.17182/hepdata.58800.v1/t17

    Number of b-tagged jets in the combined electron plus three jets W+jets and top control region.

  • Table 18

    Data from F 3F

    10.17182/hepdata.58800.v1/t18

    Number of b-tagged jets in the combined muon plus three jets W+jets and top control region.

  • Table 19

    Data from F 4A

    10.17182/hepdata.58800.v1/t19

    Effective mass in the electron plus four jets W+jets control region.

  • Table 20

    Data from F 4B

    10.17182/hepdata.58800.v1/t20

    Effective mass in the muon plus four jets W+jets control region.

  • Table 21

    Data from F 4C

    10.17182/hepdata.58800.v1/t21

    Effective mass in the electron plus four jets top control region.

  • Table 22

    Data from F 4D

    10.17182/hepdata.58800.v1/t22

    Effective mass in the muon plus four jets top control region.

  • Table 23

    Data from F 5A

    10.17182/hepdata.58800.v1/t23

    Effective mass in the 3-jet loose signal region (electron channel).

  • Table 24

    Data from F 5B

    10.17182/hepdata.58800.v1/t24

    Effective mass in the 3-jet loose signal region (muon channel).

  • Table 25

    Data from F 5C

    10.17182/hepdata.58800.v1/t25

    Effective mass in the 3-jet tight signal region (electron channel).

  • Table 26

    Data from F 5D

    10.17182/hepdata.58800.v1/t26

    Effective mass in the 3-jet tight signal region (muon channel).

  • Table 27

    Data from F 6A

    10.17182/hepdata.58800.v1/t27

    Effective mass in the 4-jet loose signal region (electron channel).

  • Table 28

    Data from F 6B

    10.17182/hepdata.58800.v1/t28

    Effective mass in the 4-jet loose signal region (muon channel).

  • Table 29

    Data from F 6C

    10.17182/hepdata.58800.v1/t29

    Effective mass in the 4-jet tight signal region (electron channel).

  • Table 30

    Data from F 6D

    10.17182/hepdata.58800.v1/t30

    Effective mass in the 4-jet tight signal region (muon channel).

  • Table 31

    Data from F 7

    10.17182/hepdata.58800.v1/t31

    Expected 95% CL exclusion limits in the MSUGRA/CMSSM framework with the combined electron and muon channels.

  • Table 32

    Data from F 7

    10.17182/hepdata.58800.v1/t32

    Observed 95% CL exclusion limits in the MSUGRA/CMSSM framework with the combined electron and muon channels.

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