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Weekly report Abdualazem Fadol March 23, 2020 Institute for Collider Particle Physics University of the Witwatersrand
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Page 1: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

Weekly report

Abdualazem Fadol

March 23, 2020

Institute for

Collider Particle PhysicsUniversity of the Witwatersrand

Page 2: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

2

DiHiggs multilepton analysisSingle-Higgs contribution

∫Ldt = 80.5 fb−1 Non-Res ZH ggH WH VBF t t̄H Total background

4` 100.0% 100.0% 100.0% 100.0% 100.0% 100.0% 100.0%Total charge = 0 94.0% 99.9% 99.0% 64.7% 98.8% 87.1% 88.2%Trigger Match 93.0% 99.6% 94.5% 64.7% 96.1% 85.4% 83.4%Iso FixedCutLoose 73.2% 79.3% 74.5% 64.7% 74.9% 58.9% 42.0%m`+`−(SFOS) > 4 GeV 67.9% 75.1% 59.2% 33.9% 60.9% 56.1% 35.1%0/1-SFOS 34.4% 29.7% 0.5% 33.9% 0.6% 35.1% 2.5%b-veto 31.3% 25.6% 0.5% 33.9% 0.5% 4.5% 1.3%ml0 l1 > 10 GeV 30.7% 25.6% 0.5% 33.9% 0.5% 4.5% 1.3%|ml2 l3 −mZ | < 25 GeV 13.9% 25.6% 0.1% 33.9% 0.1% 1.9% 0.9%|ml2 l3 −mZ | > 25 GeV 16.9% 0.0% 0.4% 0.0% 0.4% 2.6% 0.4%Emiss

T > 20 GeV 16.1% 0.0% 0.2% 0.0% 0.3% 2.4% 0.3%m`+`−(SFOS) > 4 GeV 67.9% 75.1% 59.2% 33.9% 60.9% 56.1% 35.1%2-SFOS 33.4% 45.4% 58.7% 0.0% 60.4% 21.0% 32.7%b-veto 28.9% 42.3% 55.9% 0.0% 54.2% 3.2% 30.2%ml0 l1 > 10 GeV 28.4% 42.3% 53.4% 0.0% 51.7% 3.1% 28.0%|ml0 l1 −mZ | > 30 GeV 25.9% 24.5% 53.3% 0.0% 51.6% 2.7% 6.8%Emiss

T > 50 GeV 17.6% 14.3% 2.5% 0.0% 4.2% 2.1% 0.6%

Acceptance× efficiencyTotal N. events 1868.4780 289600.00 19445000.0 250400.00 1723900.0 2027000.0 -

0/1-SFOS|ml2 l3 −mZ | < 25 0.002372 0.000017 0.000000001 0.0000015 0.00000008 0.00000176 -Emiss

T > 20 0.003224 0 0.0000004 0 0.00000096 0.00000274 -2-SFOS

EmissT > 50 GeV 0.003943 0.000005 0.000055 0 0.00017343 0.00000195 -

Abdualazem | Weekly report

Page 3: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

3

DiHiggs multilepton analysisSingle-Higgs contribution

∫Ldt = 80.5 fb−1 Non-Res ZH ggH WH VBF t t̄H Total background

4` 0.34±0.02 24.87±3.04 53.38±0.24 1.49±0.86 8.18±0.04 19.11±0.28 5748.33±46.13Total charge = 0 0.32±0.02 24.84±3.04 52.84±0.24 0.96±0.68 8.08±0.04 16.65±0.26 5067.17±41.58Trigger Match 0.32±0.02 24.76±3.03 50.42±0.23 0.96±0.68 7.86±0.04 16.33±0.26 4792.24±39.91Iso FixedCutLoose 0.25±0.02 19.73±2.69 39.76±0.21 0.96±0.68 6.13±0.03 11.25±0.22 2412.45±12.67m`+`−(SFOS) > 4 GeV 0.23±0.02 18.68±2.62 31.60±0.18 0.50±0.50 4.98±0.03 10.72±0.21 2019.22±12.170/1-SFOS 0.12±0.00 7.38±1.63 0.27±0.02 0.50±0.50 0.05±0.00 6.71±0.17 142.04±6.49b-veto 0.11±0.00 6.36±1.51 0.25±0.02 0.50±0.50 0.04±0.00 0.86±0.06 73.80±5.04ml0 l1 > 10 GeV 0.11±0.00 6.36±1.51 0.25±0.02 0.50±0.50 0.04±0.00 0.86±0.06 72.89±5.02|ml2 l3 −mZ | < 25 GeV 0.05±0.00 6.36±1.51 0.03±0.01 0.50±0.50 0.01±0.00 0.37±0.04 51.81±3.54|ml2 l3 −mZ | > 25 GeV 0.06±0.00 0.00±0.00 0.21±0.02 0.00±0.00 0.03±0.00 0.49±0.04 21.09±3.42Emiss

T > 20 GeV 0.06±0.00 0.00±0.00 0.13±0.01 0.00±0.00 0.03±0.00 0.47±0.04 19.02±3.312-SFOS 0.11±0.01 11.30±2.05 31.33±0.18 0.00±0.00 4.93±0.03 4.01±0.13 1877.18±9.32b-veto 0.10±0.01 10.51±1.98 29.85±0.18 0.00±0.00 4.43±0.03 0.61±0.05 1735.06±7.97ml0 l1 > 10 GeV 0.10±0.01 10.51±1.98 28.50±0.17 0.00±0.00 4.22±0.03 0.59±0.05 1610.46±7.74|ml0 l1 −mZ | > 30 GeV 0.09±0.01 6.09±1.45 28.47±0.17 0.00±0.00 4.22±0.03 0.52±0.04 389.72±4.87Emiss

T > 50 GeV 0.06±0.01 3.56±1.14 1.32±0.04 0.00±0.00 0.34±0.01 0.40±0.04 35.40±2.95

Abdualazem | Weekly report

Page 4: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

4

DiHiggs multilepton analysisSingle-Higgs contribution

∫Ldt = 80.5 fb−1 Non-Res ZH ggH WH VBF t t̄H Total background

4` 232.46±10.97 71.57±8.72 1586293.09±7098.04 2.78±1.61 169779.73±836.11 9044.21±132.02 8279386.59±78191.36Total charge = 0 218.47±10.89 71.48±8.72 1570320.81±7062.00 1.92±1.36 167782.34±831.20 7873.74±123.39 6669917.41±69715.28Trigger Match 216.14±10.86 71.28±8.72 1498348.70±6898.05 1.92±1.36 163159.43±819.72 7724.85±122.30 6195414.28±67090.94Iso FixedCutLoose 170.35±10.61 57.21±7.78 1181463.74±6126.77 1.92±1.36 127173.97±723.68 5330.21±101.85 715253.39±14230.67m`+`−(SFOS) > 4 GeV 157.80±10.55 54.04±7.55 939104.73±5461.17 1.01±1.01 103395.75±652.42 5081.65±99.08 618092.46±13810.340/1-SFOS 79.90±3.15 21.91±4.83 7960.46±506.07 1.01±1.01 948.16±62.36 3184.85±78.60 136729.05±10254.92b-veto 72.60±2.89 18.93±4.51 7482.94±490.46 1.01±1.01 855.64±59.32 411.13±27.82 84790.57±7953.39ml0 l1 > 10 GeV 71.28±2.86 18.93±4.51 7303.24±484.88 1.01±1.01 827.65±58.38 410.37±27.77 82534.68±7850.96|ml2 l3 −mZ | < 25 GeV 32.11±1.95 18.93±4.51 993.73±182.24 1.01±1.01 140.18±24.71 178.04±18.78 37366.89±5113.53|ml2 l3 −mZ | > 25 GeV 39.17±2.10 0.00±0.00 6309.51±449.32 0.00±0.00 687.47±52.89 232.33±20.46 45167.79±5937.85Emiss

T > 20 GeV 37.42±2.05 0.00±0.00 3835.30±351.33 0.00±0.00 549.65±47.40 222.17±20.15 43335.12±5824.452-SFOS 77.91±10.06 32.13±5.81 931144.27±5437.67 0.00±0.00 102447.59±649.44 1896.80±60.32 481363.41±8802.81b-veto 67.43±9.99 29.89±5.59 887062.04±5309.40 0.00±0.00 92009.94±615.84 283.14±22.31 425587.95±6800.28ml0 l1 > 10 GeV 66.23±9.98 29.89±5.59 846853.27±5187.96 0.00±0.00 87691.47±601.21 274.15±22.05 393495.73±6488.95|ml0 l1 −mZ | > 30 GeV 60.34±9.95 17.80±4.23 846139.91±5185.70 0.00±0.00 87662.03±601.11 242.27±20.40 116070.34±5556.21Emiss

T > 50 GeV 41.39±9.83 10.35±3.30 39279.38±1117.88 0.00±0.00 7118.38±171.47 188.48±18.29 27910.63±4298.44

Abdualazem | Weekly report

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5

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Work in ProgressATLAS-1

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Abdualazem | Weekly report

Page 6: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

6

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Work in ProgressATLAS-1

L dt = 139.0 fb∫ = 13 TeV, s

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Abdualazem | Weekly report

Page 7: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

7

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L dt = 139.0 fb∫ = 13 TeV, s

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Abdualazem | Weekly report

Page 8: indico.ihep.ac.cn · 2020. 3. 23. · 2 DiHiggs multilepton analysis Single-Higgs contribution R Ldt=80:5 fb 1 Non-Res ZH ggH WH VBF t tH Total background 4‘ 100.0% 100.0% 100.0%

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Abdualazem | Weekly report

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Abdualazem | Weekly report

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InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]T

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ee→Z

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Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

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ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

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11

pZT distribution

Z → ee (Topoclusters, Loose)

0 100 200 300 400 500 600

[GeV]TZp

1−10

1

10

210

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410

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610

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nts

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0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

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[GeV]TZp

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Eve

nts

/ [ 5

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

0.5

1

1.5

2

Dat

a/M

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[GeV]TZp

1−10

1

10

210

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410

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610

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Eve

nts

/ [ 5

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 100 200 300 400 500 600

[GeV]TZp

1−10

1

10

210

310

410

510

610

710

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910

1010

1110

1210

1310

Eve

nts

/ [ 5

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

0.5

1

1.5

2

Dat

a/M

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0 100 200 300 400 500 600

[GeV]TZp

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 5

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

0.5

1

1.5

2

Dat

a/M

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[GeV]TZp

1−10

1

10

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610

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1310

Eve

nts

/ [ 5

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 100 200 300 400 500 600

[GeV]TZp

0

0.5

1

1.5

2

Dat

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12

pZT distribution

Z → ee (Topoclusters)

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Jet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

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3.0

Dat

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Topoclusters objectspowheg+Pythia8Veto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Zero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

C

Topoclusters objectsSherpaJet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaVeto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 100 200 300 400 500 600 [GeV]

TZp

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaZero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

Abdualazem | Weekly report

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13

EmissT /

√HT distribution

Z → ee (Topoclusters, Loose)

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

a/M

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TH/missTE

1−10

1

10

210

310

410

510

610

710

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910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

1

10

210

310

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610

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1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

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TH/missTE

1−10

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10

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Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

1

1.5

2

Dat

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14

EmissT /

√HT distribution

Z → ee (Topoclusters)

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Jet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Veto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Zero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaJet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaVeto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20

TH/ TmissE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaZero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

Abdualazem | Weekly report

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15

EmissT /

√∑ET distribution

Z → ee (Topoclusters, Loose)

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

a/M

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significancemissTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

a/M

C

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

1−10

1

10

210

310

410

510

610

710

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910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

a/M

C

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significancemissTE

1−10

1

10

210

310

410

510

610

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910

1010

1110

1210

1310

Eve

nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

significancemissTE

0

0.5

1

1.5

2

Dat

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16

EmissT /

√∑ET distribution

Z → ee (Topoclusters)

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Jet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Veto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectspowheg+Pythia8Zero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaJet inclusive

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaVeto Fwdjet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

0 2 4 6 8 10 12 14 16 18 20 significanceT

missE

0.0

0.5

1.0

1.5

2.0

2.5

3.0

Dat

a/M

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Topoclusters objectsSherpaZero jet

ee→Z

InternalATLAS-1

Ldt = 58.5 fb∫ = 13 TeV, s

LooseTightTighterTenacious

Abdualazem | Weekly report

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17

The EmissT scale

Z → ee (Topoclusters)

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Jet inclusive, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Veto Fwdjet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

50−

40−

30−

20−

10−

0

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Zero jet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Jet inclusive, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Veto Fwdjet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

50−

40−

30−

20−

10−

0

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Loose working point ee→Zero jet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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18

The EmissT scale

Z → ee (Topoclusters)

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0.6

0.8

1.0

1.2

1.4

1.6

Dat

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Thank you!

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Additional slidesEmiss

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Additional slidesEmiss

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Additional slidespZ

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ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

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ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

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Additional slidespZ

T distribution, Z → ee (Topoclusters, Tighter)

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Additional slidespZ

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Zero jet, Z

Data

ee→Z

tt

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26

Additional slidesEmiss

T /√

HT distribution,Z → ee (Topoclusters, Tight)

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

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10

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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/ [ 1

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]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

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27

Additional slidesEmiss

T /√

HT distribution,Z → ee (Topoclusters, Tighter)

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

1

10

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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/ [ 1

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

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/ [ 1

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]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

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TH/missTE

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Additional slidesEmiss

T /√

HT distribution,Z → ee (Topoclusters, Tenacious)

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

1−10

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

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/ [ 1

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]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

0

0.5

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nts

/ [ 1

GeV

]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 2 4 6 8 10 12 14 16 18 20

TH/missTE

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

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TH/missTE

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Additional slides∑ET distribution,Z → ee (Topoclusters, Loose)

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[GeV]T

missE ∑1−10

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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missE ∑0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

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eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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[GeV]T

missE ∑0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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missE ∑0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Loose working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

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30

Additional slides∑ET distribution,Z → ee (Topoclusters, Tight)

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑1−10

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/ [ 6

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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missE ∑0

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tight working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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[GeV]T

missE ∑0

0.5

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tight working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

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31

Additional slides∑ET distribution,Z → ee (Topoclusters, Tighter)

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑1−10

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

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missE ∑0

0.5

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Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

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missE ∑1−10

1

10

210

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410

510

610

710

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910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tighter working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

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10

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510

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1010

1110

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1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

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missE ∑1−10

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10

210

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410

510

610

710

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1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

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10

210

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410

510

610

710

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1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tighter working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

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32

Additional slides∑ET distribution,Z → ee (Topoclusters, Tenacious)

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

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[GeV]T

missE ∑1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

a/M

C

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[GeV]T

missE ∑1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Powheg + Pythia

Tenacious working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

a/M

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[GeV]T

missE ∑1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Jet inclusive, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

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[GeV]T

missE ∑1−10

1

10

210

310

410

510

610

710

810

910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Veto Fwdjet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

Dat

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[GeV]T

missE ∑1−10

1

10

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410

510

610

710

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910

1010

1110

1210

1310

Eve

nts

/ [ 6

0 G

eV ]

Uncertainty

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST )

Sherpa

Tenacious working point ee Events→Zero jet, Z

Data

ee→Z

tt

Diboson

0 500 1000 1500 2000 2500 3000

[GeV]T

missE ∑0

0.5

1

1.5

2

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33

Additional slidesThe Emiss

T scale, Z → ee (Topoclusters, Tight)

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Jet inclusive, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

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[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Veto Fwdjet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

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[GeV]ZT

p

50−

40−

30−

20−

10−

0

10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Zero jet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

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[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Jet inclusive, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Veto Fwdjet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

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2

Dat

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p

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20−

10−

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tight working point ee→Zero jet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

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34

Additional slidesThe Emiss

T scale, Z → ee (Topoclusters, Tighter)

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Jet inclusive, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

a/M

C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Veto Fwdjet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

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[GeV]ZT

p

50−

40−

30−

20−

10−

0

10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Zero jet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Jet inclusive, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Veto Fwdjet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

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2

Dat

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[GeV]ZT

p

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40−

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10−

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tighter working point ee→Zero jet, Z

Data

Sherpa

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35

Additional slidesThe Emiss

T scale, Z → ee (Topoclusters, Tenacious)

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Jet inclusive, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

20−

15−

10−

5−

0

5

10

[GeV

]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Veto Fwdjet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

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2

Dat

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[GeV]ZT

p

50−

40−

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20−

10−

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Zero jet, Z

Data

Powheg+Pythia

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

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2

Dat

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C

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[GeV]ZT

p

20−

15−

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0

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Jet inclusive, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

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1.5

2

Dat

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0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Veto Fwdjet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

1

1.5

2

Dat

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C

0 20 40 60 80 100 120 140 160 180 200

[GeV]ZT

p

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30−

20−

10−

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10

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]⟩

Z A⋅

mis

s

T E⟨

ATLAS Internal-1 L dt = 58.5 fb∫ = 13 TeV, s

Topoclusters objects (TST)

Tenacious working point ee→Zero jet, Z

Data

Sherpa

0 20 40 60 80 100 120 140 160 180 200 [GeV]

TZp

0

0.5

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