Limits on the ATGC EFT parameters
Data from Table 2 of the publication, Page 13
10.17182/hepdata.85867.v1/t1
One-dimensional limits on the ATGC EFT parameters at 95% CL
Data from Table 2 of the publication, Page 13
10.17182/hepdata.85867.v1/t1
One-dimensional limits on the ATGC EFT parameters at 95% CL
Data from Table 3 of the publication, Page 13
10.17182/hepdata.85867.v1/t2
One-dimensional limits on the ATGC effective Lagrangian (LEP parametrization) parameters at 95% CL
Data from page 11 of the publication
10.17182/hepdata.85867.v1/t3
The best fit signal strength for dielectron, dimuon and combined dilepton channels. The measurement is performed in a kinematic region...
Data from page 11 of the publication
10.17182/hepdata.85867.v1/t4
Measured signal cross section for dielectron, dimuon and combined dilepton channels. The measurement is performed in a kinematic region defined...
Fig 8 from page 12 of the publication
10.17182/hepdata.85867.v1/t5
Distributions of $p_{TZ}$ in data and total SM background, EW Zjj signal and two ATGC scenarios in the dimuon channel
Fig 8 from page 12 of the publication
10.17182/hepdata.85867.v1/t6
Distributions of $p_{TZ}$ in data and total SM background, EW Zjj signal and two ATGC scenarios in the dielectron channel
Fig 4 from page 7 of the publication
10.17182/hepdata.85867.v1/t7
Distributions of $m_{jj}$ in data and total SM background and EW Zjj signal in the dimuon channel. Kinematic region is...
Fig 3 from page 7 of the publication
10.17182/hepdata.85867.v1/t8
Distributions of $m_{jj}$ in data and total SM background and EW Zjj signal in the dimuon channel. Kinematic region is...
Fig 7 from page 10 of the publication
10.17182/hepdata.85867.v1/t9
Distributions of the transformed BDT discriminant in data and total SM background and EW Zjj signal in the dimuon channel....
Fig 7 from page 10 of the publication
10.17182/hepdata.85867.v1/t10
Distributions of the transformed BDT discriminant in data and total SM background and EW Zjj signal in the dimuon channel....
Fig 12 from page 16 of the publication
10.17182/hepdata.85867.v1/t11
Efficiency of a gap activity veto in dielectron and dimuon events with BDT > 0.92, as a function of the...
Fig 12 from page 16 of the publication
10.17182/hepdata.85867.v1/t12
Efficiency of a gap activity veto in dielectron and dimuon events with BDT > 0.92, as a function of total...
Fig 13 from page 16 of the publication
10.17182/hepdata.85867.v1/t13
Efficiency of a gap activity veto in dielectron and dimuon events with BDT > 0.92, as a function of total...
Fig 13 from page 16 of the publication
10.17182/hepdata.85867.v1/t14
Efficiency of a gap activity veto in dielectron and dimuon events with BDT > 0.92, as a function of the...
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