Measurement of dijet production with a veto on additional central jet activity in pp collisions at sqrt(s)=7 TeV using the ATLAS detector

The collaboration
JHEP 09 (2011) 053, 2011.

Abstract (data abstract)
CERN-LHC. Measurement of dijet production with a jet veto on additional central jet activity in proton-proton collisions at a centre-of-mass energy of 7 TeV. The measurement was performed using 2010 data recorded by the ATLAS detector. The boundary jets system is defined using two different selection criteria: the two leading pT jets selection, where the two highest transverse momentum jets (of transverse momentum pT > 20 GeV and absolute rapidity |y| < 4.4) in the events are used and the forward-backward selection, where the most forward and most backward jets in the events (same selection cuts) are used. The Gap Fraction is defined as the fraction of dijet events which have no other jets with transverse momentum above a veto scale Q0 (20 GeV) in the rapidity interval between the boundary jets. Also measured is the mean multiplicity of jets above this veto scale in the rapidity interval bounded by the dijet system.

• #### Table 1

Data from 4A

10.17182/hepdata.57626.v1/t1

The Gap Fraction as a function of the mean transverse momentum of the boundary jets for boundary jets having a...

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Data from 4A

10.17182/hepdata.57626.v1/t2

The Gap Fraction as a function of the mean transverse momentum of the boundary jets for boundary jets having a...

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Data from 4A

10.17182/hepdata.57626.v1/t3

The Gap Fraction as a function of the mean transverse momentum of the boundary jets for boundary jets having a...

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Data from 4A

10.17182/hepdata.57626.v1/t4

The Gap Fraction as a function of the mean transverse momentum of the boundary jets for boundary jets having a...

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Data from 4A

10.17182/hepdata.57626.v1/t5

The Gap Fraction as a function of the mean transverse momentum of the boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t6

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t7

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t8

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t9

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t10

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t11

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 3A,7A

10.17182/hepdata.57626.v1/t12

The Gap Fraction as a function of the rapidity difference between the two boundary jets for boundary jets having a...

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Data from 5A

10.17182/hepdata.57626.v1/t13

The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 5A

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The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 5A

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The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 5A

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The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 5A

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The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 5A

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The Gap Fraction as a function of the dijet veto energy, Q0, for boundary jets having a mean transverse momentum...

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Data from 8A

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The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

10.17182/hepdata.57626.v1/t20

The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

10.17182/hepdata.57626.v1/t21

The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

10.17182/hepdata.57626.v1/t22

The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

10.17182/hepdata.57626.v1/t23

The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

10.17182/hepdata.57626.v1/t24

The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 8A

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The Gap Fraction as a function of the rapidity difference between the boundary jets for boundary jets that have a...

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Data from 6A

10.17182/hepdata.57626.v1/t26

The mean number of jets in the gap as a function of the mean transverse momentum of the boundary jets...

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Data from 6A

10.17182/hepdata.57626.v1/t27

The mean number of jets in the gap as a function of the mean transverse momentum of the boundary jets...

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Data from 6A

10.17182/hepdata.57626.v1/t28

The mean number of jets in the gap as a function of the mean transverse momentum of the boundary jets...

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Data from 6A

10.17182/hepdata.57626.v1/t29

The mean number of jets in the gap as a function of the mean transverse momentum of the boundary jets...

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Data from ?

10.17182/hepdata.57626.v1/t30

The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

10.17182/hepdata.57626.v1/t31

The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

10.17182/hepdata.57626.v1/t32

The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

10.17182/hepdata.57626.v1/t33

The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the boundary jets for boundary jets that...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

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Data from ?

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The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

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Data from ?

10.17182/hepdata.57626.v1/t42

The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...

• #### Table 43

Data from ?

10.17182/hepdata.57626.v1/t43

The mean number of jets as a function of the rapidity difference between the two boundary jets for boundary jets...