# Further information

This analysis is documented in http://cds.cern.ch/record/2682103 and the public webpage for this analysis is http://cms-results.web.cern.ch/cms-results/public-results/preliminary-results/SUS-19-006/index.html/

# Technical plots for CMS speakers (click on plots to get larger pdf versions)

## SM Backgrounds

 Figure phoA : Distribution of single photon event yields with baseline selection applied in the 46 search bins with . Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.

 Figure phoB : Distribution of single photon event yields with baseline selection applied and versus . Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.

 Figure phoC : Distribution of single photon event yields with baseline selection applied and versus . Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.

 Figure phoD : Distribution of single photon event yields with baseline selection applied and versus . Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.

 Figure phoE : Measured photon purity versus . The solid points with errors show the purity for events with a photon reconstructed in the barrel; open points with errors show the purity for events with a photon reconstructed in the endcap.

 Figure phoF : Distribution of with baseline selection applied in the 46 search bins with . Because of limited statistical precision in the simulated event samples at large , the transfer factors determined for the region are also used for the region. Points with error bars show the computed value in each bin with statistical uncertainties.

 Figure Z1a : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z1b : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z1c : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied, except for and the of the Z-boson candidate, which are subject only to trigger and preselection requirements.

 Figure Z1d : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied. Baseline selection is applied, except for and the of the Z-boson candidate, which are subject only to trigger and preselection requirements.

 Figure Z1e : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z1f : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z1g : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z1h : Distribution in for . Data appear as points with error bars, simulation as stacked histograms, with the data over simulation ratio in the lower panel. The red dashed line in the ratio plot denotes the sample average. Baseline selection is applied.

 Figure Z2 : Double ratio vs. (left), (center), and Events in the simulated +jets sample have been weighted by the reciprocal of the -dependent function represented by the green dot-dashed line in the left-hand panel. The average value of this function is 0.95. Points with error bars show the value of in each bin with statistical uncertainties. The solid and dashed blue lines show the straight-line fit and uncertainties propagated from the fit, respectively. The average value, 1.00, is drawn as a red dashed line on each plot.

 Figure Z3a : Representative dilepton mass distributions from the +jets control sample. The solid blue curve is the result of a fit to the data of a function with peaking signal and continuum background components; the dashed line represents the background. The purity of the sample is given by the ratio of signal to total areas within GeV of the Z boson mass. The stacked distributions from simulation serve to show the approximate composition of the sample, but play no role in the fit or purity measurement. (a) with , .

 Figure Z3b : Representative dilepton mass distributions from the +jets control sample. The solid blue curve is the result of a fit to the data of a function with peaking signal and continuum background components; the dashed line represents the background. The purity of the sample is given by the ratio of signal to total areas within GeV of the Z boson mass. The stacked distributions from simulation serve to show the approximate composition of the sample, but play no role in the fit or purity measurement. (b) with , .

 Figure Z3c : Representative dilepton mass distributions from the +jets control sample. The solid blue curve is the result of a fit to the data of a function with peaking signal and continuum background components; the dashed line represents the background. The purity of the sample is given by the ratio of signal to total areas within GeV of the Z boson mass. The stacked distributions from simulation serve to show the approximate composition of the sample, but play no role in the fit or purity measurement. (c) with , .

 Figure Z3d : Representative dilepton mass distributions from the +jets control sample. The solid blue curve is the result of a fit to the data of a function with peaking signal and continuum background components; the dashed line represents the background. The purity of the sample is given by the ratio of signal to total areas within GeV of the Z boson mass. The stacked distributions from simulation serve to show the approximate composition of the sample, but play no role in the fit or purity measurement. (d) with , .

 Figure BKa : Data driven background composition in zero-lepton signal region projected onto different bins in search variables , number of jets () and number of b-tagged jets (). Each pie-chart for a given search variable is inclusive in other three search variables with baseline selections applied.

 Figure BKb : Data driven background composition in zero-lepton signal region projected onto two dimensional bins in search variables number of jets () and number of b-tagged jets (). These pie-charts are inclusive in , after selection 300 GeV and 300 GeV applied.

 Figure BKc : Data driven background composition in zero-lepton signal region projected onto two dimensional bins in search variables number of jets () and number of b-tagged jets (). These pie-charts are inclusive in , after selection 600 GeV and 600 GeV applied.

 Figure LLa : Lost lepton background in signal region decomposed as that from ttbar, W+jets and Single top in different bins of , , number of jets () and number of b-tagged jets (). Each pie-chart for a given search variable is inclusive in other three search variables with baseline selections applied.

 Figure LLb : (Top) Stacked distribution for W+jets showing relative fractions of “Single lepton” and three sub-categories of “Lost lepton” events (lost due to out of acceptance, failing ID/isolation requirement or having hadronically decaying tau) parameterized in bins of number of jets () and number of b-tagged jets (). Uncertainties are statistical only. (Bottom) Ratio of "Lost lepton" (combining three sub-categories) to "Single lepton" fraction parameterized in number of jets () and number of b-tagged jets (). Figure LLc : (Top) Stacked distribution for ttbar showing relative fractions of “Single lepton” and three sub-categories of “Lost lepton” events (lost due to out of acceptance, failing ID/isolation requirement or having hadronically decaying tau) parameterized in bins of number of jets () and number of b-tagged jets (). Uncertainties are statistical only. (Bottom) Ratio of "Lost lepton" (combining three sub-categories) to "Single lepton" fraction parameterized in number of jets () and number of b-tagged jets ().

## Results: yields vs. background prediction, select kinematic distributions

Figure Caption
Figure 1a : One-dimensional projection of observed number of events and pre-fit background predictions in the search region in with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 1b : One-dimensional projection of observed number of events and pre-fit background predictions in the search region in .
Figure 1c: One-dimensional projection of observed number of events and pre-fit background predictions in the search region in .

| | Figure 2a : The same distributions shown in Fig. 11a in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot.
 Figure 2b : The same distributions shown in Fig. 11b in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot. Figure 2c : The same distributions shown in Fig. 11c in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot. Figure 2d : The same distributions shown in Fig. 11d in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot. Figure 2e : The same distributions shown in Fig. 11e in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot. Figure 2f : The same distributions shown in Fig. 11f in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot.

Figure Caption
Figure 3a : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T1tttt signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3b : The same distributions shown in Add. Fig. 21a, with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 3c : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T1bbbb signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3d : The same distributions shown in Add. Fig. 21c, with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 3e : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T1qqqq signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3f : The same distributions shown in Add. Fig. 21e, with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 3g : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T2tt signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3h : The same distributions shown in Add. Fig. 21g, with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 3i : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T2bb signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3j : The same distributions shown in Add. Fig. 21i, with the pull for each bin, defined as , shown in the lower panel of the plot.
Figure 3k : Observed numbers of events and corresponding SM background predictions in intervals of and , integrated over search regions with GeV and GeV. An example T2qq signal scenario with GeV and GeV is shown by the (stacked) purple histogram.
Figure 3l : The same distributions shown in Add. Fig. 21k, with the pull for each bin, defined as , shown in the lower panel of the plot.

Figure Caption
Figure 4 : The same distributions shown in Fig. 9 in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot.

Figure Caption
Figure 5 : The same distributions shown in Fig. 10 in the body of the paper, with the pull for each bin, defined as , shown in the lower panel of the plot.

 Figure 6a : The sensitivity of the analysis to different direct gluino production signal models as a function of the analysis binning. The upper panel shows the total predicted SM backgrounds and the expected number of signal events in 137 of data for six representative model points per analysis bin. The bottom panel shows the expected sensitivity, expressed in terms of the figure of merit Q, per analysis bin.

 Figure 6b : The sensitivity of the analysis to different direct squark production signal models as a function of the analysis binning. The upper panel shows the total predicted SM backgrounds and the expected number of signal events in 137 of data for six representative model points per analysis bin. The bottom panel shows the expected sensitivity, expressed in terms of the figure of merit Q, per analysis bin.

## Event displays

Figure Caption
Figure 8a : Event displays for a SUSY candidate event with 12 jets in the search region, 273447:179:291867669 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the non b-tagged jets are marked and labeled in orange and the momenta of the b-tagged jets are marked in green.
Figure 8b : Event displays for a SUSY candidate event with 12 jets in the search region, 273447:179:291867669 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the non b-tagged jets are marked and labeled in orange and the momenta of the b-tagged jets are marked in green.
Figure 8c : Event displays for a SUSY candidate event with 12 jets in the search region, 273447:179:291867669 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the non b-tagged jets are marked and labeled in orange and the momenta of the b-tagged jets are marked in green.
Figure 8d : Event displays for a SUSY candidate event with 12 jets in the search region, 273447:179:291867669 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the non b-tagged jets are marked and labeled in orange and the momenta of the b-tagged jets are marked in green.

Figure Caption
Figure 9a : Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
Figure 9b : Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
Figure 9c : Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
Figure 9d : Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.

Figure Caption
Figure 10a : Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
Figure 10b : Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
Figure 10c : Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
Figure 10d : Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.

-- RishiPatel - 2019-07-02

Topic attachments
I Attachment History Action Size Date Who Comment
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pdf 321219_344_504952772_3DTower_BlackBackground.pdf r1 manage 1504.9 K 2019-07-03 - 18:56 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
png 321219_344_504952772_3DTower_BlackBackground.png r1 manage 7588.3 K 2019-07-03 - 18:56 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
pdf 321219_344_504952772_3DTower_WhiteBackground.pdf r1 manage 1705.8 K 2019-07-03 - 18:56 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
png 321219_344_504952772_3DTower_WhiteBackground.png r1 manage 9273.4 K 2019-07-03 - 18:57 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
pdf 321219_344_504952772_RhoPhi_BlackBackground.pdf r1 manage 891.0 K 2019-07-03 - 18:56 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
png 321219_344_504952772_RhoPhi_BlackBackground.png r1 manage 2456.4 K 2019-07-03 - 18:57 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
pdf 321219_344_504952772_RhoPhi_WhiteBackground.pdf r1 manage 875.6 K 2019-07-03 - 18:56 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
png 321219_344_504952772_RhoPhi_WhiteBackground.png r1 manage 2612.4 K 2019-07-03 - 18:57 AlexxPerloff Event displays for a SUSY candidate event with very high in the search region, 321219:344:504952772 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the two jets are marked and labeled in orange.
pdf 321295_60_95701713_3DTower_BlackBackground.pdf r1 manage 1557.1 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
png 321295_60_95701713_3DTower_BlackBackground.png r1 manage 7736.3 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
pdf 321295_60_95701713_3DTower_WhiteBackground.pdf r1 manage 1758.2 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
png 321295_60_95701713_3DTower_WhiteBackground.png r1 manage 9418.1 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
pdf 321295_60_95701713_RhoPhi_BlackBackground.pdf r1 manage 960.9 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
png 321295_60_95701713_RhoPhi_BlackBackground.png r1 manage 2701.9 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
pdf 321295_60_95701713_RhoPhi_WhiteBackground.pdf r1 manage 940.4 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
png 321295_60_95701713_RhoPhi_WhiteBackground.png r1 manage 2797.2 K 2019-07-03 - 18:58 AlexxPerloff Event displays for a T1bbbb-like candidate in the search region with exactly 4 jets, all of which are b-tagged, 321295:60:95701713 in (a) view, (b) view with a white background, (c) 3D view, and (d) 3D view with a white background. The momenta of the four b-tagged jets are marked and labeled in green.
pdf AnalysisBins_BTag0_RzGamma_Run2_signal_ZJets_supplementary.pdf r2 r1 manage 16.6 K 2019-09-04 - 11:52 TribeniMishra1 Distribution of $R_{{\rm Z}/\gamma}$ with baseline selection applied in the 46 search bins with $N_{\rm b-jet}=0$. Because of limited statistical precision in the simulated event samples at large $N_{\rm jet}$, the transfer factors determined for the $8\leq$N_{\rm jet}$\leq 9$ region are also used for the $N_{\rm jet}10$ region. Points with error bars show the computed value in each bin with statistical uncertainties.
png AnalysisBins_BTag0_RzGamma_Run2_signal_ZJets_supplementary.png r2 r1 manage 14.2 K 2019-09-04 - 11:52 TribeniMishra1 Distribution of $R_{{\rm Z}/\gamma}$ with baseline selection applied in the 46 search bins with $N_{\rm b-jet}=0$. Because of limited statistical precision in the simulated event samples at large $N_{\rm jet}$, the transfer factors determined for the $8\leq$N_{\rm jet}$\leq 9$ region are also used for the $N_{\rm jet}10$ region. Points with error bars show the computed value in each bin with statistical uncertainties.
pdf AnalysisBins_BTag0_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.pdf r2 r1 manage 23.0 K 2019-09-04 - 10:35 TribeniMishra1 Distribution of single photon event yields with baseline selection applied in the 46 search bins with $N_{\rm b-jet}=0$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
png AnalysisBins_BTag0_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.png r2 r1 manage 18.0 K 2019-09-04 - 10:45 TribeniMishra1 Distribution of single photon event yields with baseline selection applied in the 46 search bins with $N_{\rm b-jet}=0$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
pdf DRtriple_Run2v17_DRr2wt_sig.pdf r3 r2 r1 manage 21.0 K 2019-09-04 - 19:22 WilliamFord Zinv double ratio vs HT, MHT, NJets
png DRtriple_Run2v17_DRr2wt_sig.png r3 r2 r1 manage 32.0 K 2019-09-04 - 19:24 WilliamFord Zinv double ratio vs HT, MHT, NJets
pdf HT_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.pdf r2 r1 manage 22.8 K 2019-09-04 - 10:37 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $H_{\rm T}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
png HT_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.png r2 r1 manage 17.1 K 2019-09-04 - 10:37 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $H_{\rm T}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
pdf MHT_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.pdf r2 r1 manage 23.9 K 2019-09-04 - 10:38 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $H^{\rm miss}_{\rm T}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
png MHT_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.png r2 r1 manage 18.7 K 2019-09-04 - 10:39 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $H^{\rm miss}_{\rm T}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
pdf NJets_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.pdf r2 r1 manage 17.4 K 2019-09-04 - 10:33 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $N_{\rm jet}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
png NJets_photon_baseline_Run2_LogY_supplementary-trig_eff-SF.png r2 r1 manage 14.8 K 2019-09-04 - 10:33 TribeniMishra1 Distribution of single photon event yields with baseline selection applied and $N_{\rm b-jet}=0$ versus $N_{\rm jet}$. Points with error bars show the observed event yields. Filled histograms show the predicted event yields from simulations, which is weighted with data/MC scale factors and measured trigger efficiencies. The ratio of observed data over simulations is shown in the lower panel.
png PieChart2DBaselineHTMHTAllBkg_137.png r1 manage 16.6 K 2019-08-13 - 18:07 AditeePrabhakarRane Data driven background composition in 2D Njet-Nbjet projection after HT300 and MHT300
pdf PieChart2DBaselineHTMHTAllBkg_withArxiv_137.pdf r1 manage 35.4 K 2019-09-05 - 10:22 AditeePrabhakarRane Data driven background composition in 2D Njet-Nbjet projection after HT300 and MHT300
png PieChart2DBaselineHTMHTAllBkg_withArxiv_137.png r1 manage 17.6 K 2019-09-05 - 10:23 AditeePrabhakarRane Data driven background composition in 2D Njet-Nbjet projection after HT300 and MHT300
pdf PieChart2DHigherHTMHTAllBkg_withArxiv_137.pdf r1 manage 35.8 K 2019-09-05 - 10:56 AditeePrabhakarRane Data driven background composition in 2D Njet-Nbjet projection after HT 600 GeV and MHT 600 GeV
png PieChart2DHigherHTMHTAllBkg_withArxiv_137.png r1 manage 17.3 K 2019-09-05 - 10:57 AditeePrabhakarRane Data driven background composition in 2D Njet-Nbjet projection after HT 600 GeV and MHT 600 GeV
pdf PieChartHTWithSupplementary_137.pdf r1 manage 42.1 K 2019-08-01 - 10:11 AditeePrabhakarRane Lost lepton background in signal region decomposed as that from ttbar, W+jets and Single top
pdf PieChartHTWithSupplementary_witharxiv_137.pdf r1 manage 42.5 K 2019-09-05 - 13:20 AditeePrabhakarRane Lost lepton background in signal region decomposed as that from ttbar, W+jets and Single top
png PieChartHTWithSupplementary_witharxiv_137.png r1 manage 17.6 K 2019-09-05 - 13:31 AditeePrabhakarRane Lost lepton background in signal region decomposed as that from ttbar, W+jets and Single top
pdf PieChartWithAllBkg_137.pdf r1 manage 33.3 K 2019-08-13 - 17:38 AditeePrabhakarRane Data driven background estimation projected in different search variables
png PieChartWithAllBkg_137.png r1 manage 15.1 K 2019-08-13 - 17:38 AditeePrabhakarRane Data driven background estimation projected in different search variables
pdf PieChartWithAllBkg_withArxiv_137.pdf r1 manage 33.4 K 2019-09-05 - 11:08 AditeePrabhakarRane Data driven background estimation projected in different search variables
png PieChartWithAllBkg_withArxiv_137.png r1 manage 16.0 K 2019-09-05 - 11:10 AditeePrabhakarRane Data driven background estimation projected in different search variables
pdf Purity_Run2_supplementary.pdf r2 r1 manage 14.4 K 2019-09-04 - 12:33 TribeniMishra1 Measured photon purity versus $H^{\rm miss}_{\rm T}$. The solid points with errors show the purity for events with a photon reconstructed in the barrel; open points with errors show the purity for events with a photon reconstructed in the endcap.
png Purity_Run2_supplementary.png r2 r1 manage 17.1 K 2019-09-04 - 12:34 TribeniMishra1 Measured photon purity versus $H^{\rm miss}_{\rm T}$. The solid points with errors show the purity for events with a photon reconstructed in the barrel; open points with errors show the purity for events with a photon reconstructed in the endcap.
pdf T1bbbb-projection-pull.pdf r2 r1 manage 16.1 K 2019-09-09 - 18:41 RishiPatel
png T1bbbb-projection-pull.png r2 r1 manage 29.4 K 2019-09-09 - 18:43 RishiPatel
pdf T1qqqq-projection-pull.pdf r2 r1 manage 17.1 K 2019-09-09 - 18:42 RishiPatel
png T1qqqq-projection-pull.png r2 r1 manage 30.9 K 2019-09-09 - 18:43 RishiPatel
pdf T1tttt-projection-pull.pdf r2 r1 manage 16.2 K 2019-09-09 - 18:40 RishiPatel
png T1tttt-projection-pull.png r2 r1 manage 30.0 K 2019-09-09 - 18:45 RishiPatel
pdf T2bb-projection-pull.pdf r2 r1 manage 16.9 K 2019-09-09 - 18:48 RishiPatel
png T2bb-projection-pull.png r2 r1 manage 30.3 K 2019-09-09 - 18:51 RishiPatel
pdf T2qq-projection-pull.pdf r2 r1 manage 16.4 K 2019-09-09 - 18:47 RishiPatel
png T2qq-projection-pull.png r2 r1 manage 31.1 K 2019-09-09 - 18:46 RishiPatel
pdf T2tt-projection-pull.pdf r2 r1 manage 16.0 K 2019-09-09 - 18:46 RishiPatel
png T2tt-projection-pull.png r2 r1 manage 29.0 K 2019-09-09 - 18:45 RishiPatel
pdf fitZmass_2j0b_ee.pdf r3 r2 r1 manage 19.9 K 2019-09-04 - 19:54 WilliamFord Zinv dilepton mass distn's with purity fits
png fitZmass_2j0b_ee.png r3 r2 r1 manage 16.3 K 2019-09-04 - 19:55 WilliamFord Zinv dilepton mass distn's with purity fits
pdf fitZmass_2j0b_mm.pdf r3 r2 r1 manage 19.9 K 2019-09-04 - 19:56 WilliamFord Zinv dilepton mass distn's with purity fits
png fitZmass_2j0b_mm.png r3 r2 r1 manage 16.3 K 2019-09-04 - 19:57 WilliamFord Zinv dilepton mass distn's with purity fits
pdf fitZmass_5j2b_ee.pdf r3 r2 r1 manage 19.9 K 2019-09-04 - 19:57 WilliamFord Zinv dilepton mass distn's with purity fits
png fitZmass_5j2b_ee.png r3 r2 r1 manage 17.0 K 2019-09-04 - 19:58 WilliamFord Zinv dilepton mass distn's with purity fits
pdf fitZmass_5j2b_mm.pdf r3 r2 r1 manage 19.6 K 2019-09-04 - 19:59 WilliamFord Zinv dilepton mass distn's with purity fits
png fitZmass_5j2b_mm.png r3 r2 r1 manage 17.4 K 2019-09-04 - 19:59 WilliamFord Zinv dilepton mass distn's with purity fits
pdf hBTags_zee.pdf r1 manage 17.2 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hBTags_zee.png r1 manage 20.8 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hBTags_zmm.pdf r1 manage 16.8 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hBTags_zmm.png r1 manage 19.4 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hHT_zee.pdf r1 manage 24.6 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hHT_zee.png r1 manage 26.8 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hHT_zmm.pdf r1 manage 24.9 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hHT_zmm.png r1 manage 26.7 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hMHT_zee.pdf r1 manage 23.9 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hMHT_zee.png r1 manage 27.4 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hMHT_zmm.pdf r1 manage 23.6 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hMHT_zmm.png r1 manage 27.4 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hNJets_zee.pdf r1 manage 17.8 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hNJets_zee.png r1 manage 21.6 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf hNJets_zmm.pdf r1 manage 17.8 K 2019-09-06 - 22:22 WilliamFord Z-dilepton analysis variable projections Data/MC
png hNJets_zmm.png r1 manage 21.5 K 2019-09-06 - 22:23 WilliamFord Z-dilepton analysis variable projections Data/MC
pdf mht-projection-pull.pdf r3 r2 r1 manage 17.4 K 2019-09-09 - 16:13 RishiPatel
png mht-projection-pull.png r3 r2 r1 manage 29.0 K 2019-09-09 - 16:12 RishiPatel
pdf mht-projection.pdf r1 manage 18.1 K 2019-09-09 - 16:13 RishiPatel
pdf nbjets-projection-pull.pdf r2 r1 manage 16.4 K 2019-09-09 - 16:14 RishiPatel
png nbjets-projection-pull.png r2 r1 manage 27.1 K 2019-09-09 - 16:16 RishiPatel
pdf njets-projection-pull.pdf r2 r1 manage 16.6 K 2019-09-09 - 16:17 RishiPatel
png njets-projection-pull.png r2 r1 manage 27.9 K 2019-09-09 - 16:19 RishiPatel
pdf results-plot-prefit-12-asrs-137Paper-log-pull.pdf r1 manage 16.3 K 2019-09-09 - 18:30 RishiPatel
png results-plot-prefit-12-asrs-137Paper-log-pull.png r2 r1 manage 20.4 K 2019-09-09 - 18:04 RishiPatel
pdf results-plot-prefit-137Paper_pre_app-QvalueGluino.pdf r2 r1 manage 60.4 K 2019-09-09 - 18:21 RishiPatel
png results-plot-prefit-137Paper_pre_app-QvalueGluino.png r2 r1 manage 64.3 K 2019-09-09 - 18:21 RishiPatel
pdf results-plot-prefit-137Paper_pre_app-QvalueSquark.pdf r2 r1 manage 66.0 K 2019-09-09 - 18:16 RishiPatel
png results-plot-prefit-137Paper_pre_app-QvalueSquark.png r2 r1 manage 69.0 K 2019-09-09 - 18:17 RishiPatel
pdf results-plot-prefit-137Paper_pre_app-log-pull.pdf r2 r1 manage 33.1 K 2019-09-09 - 17:55 RishiPatel
png results-plot-prefit-137Paper_pre_app-log-pull.png r2 r1 manage 37.9 K 2019-09-09 - 17:56 RishiPatel
pdf results-plot-prefit137Paperfb137_pre-app-pull.pdf r1 manage 33.1 K 2019-09-09 - 17:52 RishiPatel
Topic revision: r28 - 2019-09-09 - RishiPatel

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