v+jet/v

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1 V+jet/V •Found the histograms that I used to unfold the Wg Njet distributions, to cross check with Zhijun •The signal and background histograms are provided by Camilla, Feng and Li •Contains Njet distributions from the non-tight and non-isolated control regions •Subtract away EWK background, then normalized to the predicted W+jet background for Et(photon)>15 GeV NOTE : the predicted # of W+jet background for each jet multiplicity bin taken from the Njet shape that we took from control region may not be exactly the same as the prediction that we made explicitly for each jet bin. •Use this W+jet Njet distribution to obtain # of W+jet for Njet>=1 •Get the statistical and systematic error •Apply the relative size of error onto the numbers that we predict using : Nov 15th 2012

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Nov 15th 2012. V+jet/V . Found the histograms that I used to unfold the Wg Njet distributions, to cross check with Zhijun The signal and background histograms are provided by Camilla, Feng and Li Contains Njet distributions from the non-tight and non-isolated control regions - PowerPoint PPT Presentation

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Page 1: V+jet/V

1

V+jet/V

• Found the histograms that I used to unfold the Wg Njet distributions, to cross check with Zhijun

• The signal and background histograms are provided by Camilla, Feng and Li

• Contains Njet distributions from the non-tight and non-isolated control regions

• Subtract away EWK background, then normalized to the predicted W+jet background for Et(photon)>15 GeV

• NOTE : the predicted # of W+jet background for each jet multiplicity bin taken from the Njet shape that we took from control region may not be exactly the same as the prediction that we made explicitly for each jet bin.

• Use this W+jet Njet distribution to obtain # of W+jet for Njet>=1

•Get the statistical and systematic error

•Apply the relative size of error onto the numbers that we predict using :

• NWJet(Njet>=1) = NWJet(Njet>=0) - NWJet(Njet=0)

• Unfortunately I do not have the histograms for Zgamma case.

Nov 15th 2012

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Njet (W+jet, electron, Et(pho)>15 GeV)

• NWJet(Njet>=1) = 410 +- 94(stat) +- 107(syst)

• So will use 23% for stat and 26% for syst.

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Njet (W+jet, muon, Et(pho)>15 GeV)

• NWJet(Njet>=1) = 844 +- 162(stat) +- 192(syst)

• So will use 19% for stat and 23% for syst.

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W+jet/W (Et(pho)>15 GeV)Njet>=0 Njet=0 Njet>=1

e mu e mu e mu

W+jet 1241+-156+-211

2563+-274+-584

913+-156+-162

1690+-214+-269

328+-75+-86 873+-168+-199

Signal 4395+-197+-246

6444+-296+-595

2783+-188+-179

4040+-231+-280

1612 (do not consider error)

2404 (do not consider error)

Signal (no err from W+jet)

4395+-120+-125

6444+-111+-113

2783+-104+-75

4040+-86+-77

Signal/Wjet 3.54+-0.76

2.51+-0.63

3.05+-0.76

2.39+-0.49

4.9+-1.1 (only consider stat error)

4.9+-1.7 (consider total error)

2.8+-0.54 (only consider stat error)

2.8+-0.83 (consider total error)

• Use fractional errors from Njet distribution of W+jet for Njet>=1 (see page 2,3)

• Do not consider error from Signal (rel. err is smaller, and do not want to double count error)

• Difference in ratios (Sgn/Wj) between e and mu is about ~1.7 (stat), or ~1.1 (stat+syst) for Nj>=1

• Sgn/Wj ratios of e and mu channels are also compatible for Nj>=0 and Nj=0

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W+jet/W (Et(pho)>15 GeV)Njet>=0 Njet=0 Njet>=1

e mu e mu e mu

W+jet 1241+-156+-211

2563+-274+-584

913+-156+-162

1690+-214+-269

328 873

Nj>=0/Nj=0 (e,mu)

1.35 (e) 1.52 (mu)

Nj=0/Nj>=1 (e,mu)

2.78 (e) 1.92 (mu)

Signal 4395+-197+-246

6444+-296+-595

2783+-188+-179

4040+-231+-280

1612 2404

Nj>=0/Nj=0 (e,mu)

1.58 (e) 1.60 (mu)

Nj=0/Nj>=1

1.73 (e) 1.68 (mu)

• Compare ratios Nj>=0/Nj=0, and Nj=0/Nj>=1 for Wj and Signal, for e and mu

• Difficult to compute error since the errors in are correlated in numerator and demominator

• Ratios of signal are consistent between electron and muon channels

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Njet distribution for Zgamma

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Njet=0 Njet=1 Njet=2 Njet=3

Njet=0

Inclusive measurement : 2D sideband with Njet>=0 Njet unfolding : extrapolation based on inclusive estimation

Exclusive: 2D sideband with Njet=0

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Z+jet/Z (Et(pho)>15 GeV)Njet>=0 Njet=0 Njet>=1

e mu e mu e mu

Z+jet 311+-57+-68 366+-83+-73 156+-43+-32 244+-41+-49 125+-31 129+-23

Signal 1597+-71+-68

2390+-97+-73

1261+-56+-32

1788+-59+-49

366 595

Signal (no err from Z+jet)

1597+-44(stat)

2390+-53(stat)

1261+-38(stat)

1788+-45(stat)

Signal/Zjet 5.1+-1.5(stat) 6.5+-2.0(stat) 8.1+-2.8(stat) 7.3+-1.9(stat) [2.1, 4.3]

Stat only

[3.7,5.8]

• Red number is taken from background estimation from Njet unfolding

• Can not just subtract the background estimation for (Njet>=0) and Njet=0, it is wrong to do that.

• S/B for electron channel is 2.1~4.3 (stat error , 1 sigma range )

• S/B for muon channel is 3.7~ 5.8 (stat error , 1 sigma range )

• Fully cover by 1 sigma

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Backup

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Z+jet/Z (Et(pho)>15 GeV)Njet>=0 Njet=0 Njet>=1

e mu e mu e mu

Z+jet 311+-57+-68 366+-83+-73 156+-43+-32 244+-41+-49 155 122

Nj>=0/Nj=0 (e,mu)

1.99 (e) 1.50 (mu)

Nj=0/Nj>=1 (e,mu)

1.01 (e) 2.0 (mu)

Signal 1597+-71+-68

2390+-97+-73 1261+-56+-32 1788+-59+-49 336 602

Nj>=0/Nj=0 (e,mu)

1.27 (e) 1.33 (mu)

Nj=0/Nj>=1 3.75 (e) 2.97 (mu)

• Compare ratios Nj>=0/Nj=0, and Nj=0/Nj>=1 for Zj and Signal, for e and mu

•Difficult to compute error since the errors are correlated in numerator and denominator

• Ratios of signal are consistent between electron and muon channels