Search for electroweak production of charginos, neutralinos, and sleptons using leptonic final states in pp collisions at √s = 8 TeV

Abstract

Final states with exactly three leptons, four leptons, two same-sign leptons, two opposite-sign-same-flavor leptons plus two jets, and two opposite-sign leptons inconsistent with Z boson decay, are studied using a data sample consisting of an integrated luminosity of $19.5~{\rm fb}^{{\rm -}1}$ of proton-proton collision data collected in 2012 with the CMS detector at $\sqrt{s}=8~{\rm TeV}$. The observed event rates are in agreement with expectations from the standard model. The results are used to set limits on the direct production of charginos, neutralinos, and sleptons.

Detailed documentation can be found at SUS-13-006.

Approved Tables and Plots from SUS-13-006

( click on plot to get .pdf )

Introduction

Tables and Figures Abbreviated Caption
Figure 1: Chargino-neutralino pair production leading to a three-lepton final state with missing transverse energy (MET). The dotted and dashed lines indicate unstable particles and the LSP, respectively.
Figure 2: Chargino-neutralino and neutralino-neutralino pair production leading to on-shell W or Z bosons with MET.
Figure 3: Chargino and slepton pair production leading to opposite-sign lepton pairs with MET. In part (left), each chargino can decay via either mode, giving four possible diagrams that share the same final state. In part (right), the sleptons and thus the daughter leptons share the same flavor.

Equation 1: Slepton mass parameterization for models in Fig. 1.

Three-lepton search results

Tables and Figures Abbreviated Caption
Figure 4: $M_{\rm T}$ versus $M_{\ell\ell}$ for three-lepton events with an ${\rm ee}$ or $\mu\mu$ OSSF dilepton pair, where the third lepton is either an electron or a muon.
Figure 5: $E_{\rm T}^{\rm miss}$ distribution for three-lepton events with an ${\rm ee}$ or $\mu\mu$ OSSF dilepton pair, where the third lepton is either an electron or a muon. SM expectations are also shown. "Rare SM" refers to standard model processes such as ${\rm t}\bar{\rm t}Z$, ${\rm t}\bar{\rm t}W$, and triboson production. Uncertainties shown for the data are Poissonian, including those for bins with zero entries.
Figure 22: $M_{\rm T}$ versus $M_{\ell\ell}$ for three-lepton events without an OSSF dilepton pair or a hadronic $\tau$ lepton candidate.
Figure 6: $E_{\rm T}^{\rm miss}$ distribution for three-lepton ${\rm ee}\mu$ and ${\rm e}\mu\mu$ events without an OSSF pair. SM expectations are also shown. "Rare SM" refers to standard model processes such as ${\rm t}\bar{\rm t}Z$, ${\rm t}\bar{\rm t}W$, and triboson production.
Figure 23: $M_{\rm T}$ versus $M_{\ell\ell}$ for three-lepton events with a same-sign ${\rm ee}$, ${\rm e}\mu$, or $\mu\mu$ pair and a hadronic $\tau$ lepton candidate.
Figure 7: $E_{\rm T}^{\rm miss}$ distribution for three-lepton events with a same-sign ${\rm ee}$, ${\rm e}\mu$, or $\mu\mu$ pair and one hadronic $\tau$ lepton. SM expectations are also shown. "Rare SM" refers to standard model processes such as ${\rm t}\bar{\rm t}Z$, ${\rm t}\bar{\rm t}W$, and triboson production.
Figure 24: $M_{\rm T}$ versus $M_{\ell\ell}$ for three-lepton events with an opposite-sign, opposite-flavor ${\rm e}\mu$ pair and a hadronic $\tau$ lepton candidate.
Figure 8: $E_{\rm T}^{\rm miss}$ distribution for three-lepton events with an opposite-sign ${\rm e}\mu$ pair and one hadronic $\tau$ lepton. SM expectations are also shown. "Rare SM" refers to standard model processes such as ${\rm t}\bar{\rm t}Z$, ${\rm t}\bar{\rm t}W$, and triboson production.
Table 1: SM expectations and observations for events with an ${\rm ee}$ or $\mu\mu$ OSSF pair, where the third lepton is either an electron or muon. The uncertainties include both the statistical and systematic components.
Table 2: SM expectations and observations for ${\rm ee}\mu$ and ${\rm e}\mu\mu$ events without an OSSF pair. The uncertainties include both the statistical and systematic components.
Table 3: SM expectations and observations for events with a same-sign ${\rm ee}$ , ${\rm e}\mu$, or $\mu\mu$ pair and one hadronic $\tau$ lepton. The uncertainties include both the statistical and systematic components.
Table 4: SM expectations and observations for events with an opposite-sign ${\rm e}\mu$ pair and one hadronic $\tau$ lepton. The uncertainties include both the statistical and systematic components.

Search in the four-lepton final state

Tables and Figures Abbreviated Caption
Figure 25: $E_{\rm T}^{\rm miss}$ versus $M_{\ell\ell}$ for four-lepton data events with an on-Z OSSF pair and no hadronic $\tau$ lepton candidate. The legend indicates the flavor breakdown of events.
Table 5: Expected SM backgrounds and observed yields for exclusive channels of four-lepton final states. All categories have four leptons including an OSSF pair consistent with a Z boson. The three sections refer, respectively, to events with one OSSF pair and no hadronic $\tau$ candidate, one OSSF pair and one hadronic $\tau$ candidate, and two OSSF pairs and no hadronic $\tau$ candidate. The uncertainties include both the statistical and systematic components.

Search in the same-sign two-lepton final state

Tables and Figures Abbreviated Caption
Figure 9: Left: $E_{\rm T}^{\rm miss}$ versus $H_{\rm T}$ for same-sign dilepton candidate events. Only the $E_{\rm T}^{\rm miss} > 120~{\rm GeV}$ region is considered in this analysis. Right: $E_{\rm T}^{\rm miss}$ distribution for same-sign dilepton candidates in comparison to SM expectations. The hatched band shows the combined statistical and systematic errors. The bottom plot shows the error band for the ratio of the observed and total SM expected distributions.
Table 6: Observed yields and SM expectations for the same-sign dilepton search, with and without a veto on the presence of a third lepton. The uncertainties include both the statistical and systematic components.

Search in the WZ/ZZ + MET final state with two leptons and two jets

Tables and Figures Abbreviated Caption
Figure 10: The $E_{\rm T}^{\rm miss}$ distribution after the dilepton mass requirement $81<m_{\ell\ell}<101~{\rm GeV}$ (left) and the dilepton mass distribution after the signal region requirement $E_{\rm T}^{\rm miss} > 80~{\rm GeV}$, for the Z+dijet analysis. The observed distribution is compared with the sum of the predicted distributions from the Z+jets, flavor-symmetric, the sum of WZ and ZZ, and rare SM backgrounds. The ratio of observed to predicted yields in each bin is indicated. The error bars indicate the statistical uncertainty in the data and the shaded band indicates the total background uncertainty. "Rare SM" refers to standard model processes such as ${\rm ZZ}$, ${\rm t}\bar{\rm t}Z$, ${\rm t}\bar{\rm t}W$, and triboson production.
Table 7: Summary of results from the Z+dijet analysis. The total background is the sum of the Z+jets background predicted from the $E_{\rm T}^{\rm miss}$ templates method (Z+jets), the flavor-symmetric (FS) background predicted from ${\rm e}\mu$ events, and the WZ, ZZ, and rare SM backgrounds predicted from simulation. All uncertainties include both the statistical and systematic components.

Searches in the final state with non-resonant opposite-sign dileptons

Tables and Figures Abbreviated Caption
Figure 11: Schematic event used to illustrate the calculation of the $M_{\rm CT}$ and $M_{{\rm CT}\perp}$ variables. P represents a "parent" particle and C an undetected "child" particle; $v_{\rm a}$ and $v_{\rm b}$ are visible particles.
Equation 3: The $M_{\rm CT}$ variable definition.
Equation 4: An upper endpoint of the $M_{\rm CT}$ distribution.
Equation 5: An upper endpoint of the $M_{{\rm CT}\perp}$ distribution.
Table 8: Background yields from the best fit of the background-only hypothesis when fitting both channels using separate templates for top and diboson backgrounds. Also shown for comparison are event yields from simulation.
Figure 11: The $M_{{\rm CT}\perp}$ distribution compared to the background prediction for the opposite-flavor (left) and same-flavor (right) channels. The background prediction is based on a fit of templates derived from control samples or simulation. We also include the distributions for two different chargino masses in the model shown in Fig. 3 (left). In both cases, the LSP mass is set to zero.
Table 9: Low $M_{{\rm CT}\perp}$ fit yields and extrapolation to the high $M_{{\rm CT}\perp}$ region. Where the predicted value is zero, we give approximate $1\sigma$ upper limits.
Table 10: Background yields from the best fit of the background-only hypothesis in the same-flavor channel using opposite-flavor events as a template for flavor-symmetric backgrounds.
Figure 13: The $M_{{\rm CT}\perp}$ distribution compared to the background prediction for the same-flavor channel, where the background prediction is derived from an alternative template method that uses opposite-flavor dilepton events as a control sample (see text). We also include for illustration the distributions for two different slepton masses in the model shown in Fig. 3 (right). In both cases, the LSP mass is set to zero.

Interpretations of the searches

Figures Abbreviated Caption
  Figure 14: The shading in the $m_{\tilde{\chi}^0_1}$ versus $m_{\tilde{\chi}^0_2}$ ($m_{\tilde{\chi}^\pm_1}$) plane indicates the 95% CL upper limit on the chargino-neutralino production cross section times branching fraction in the flavor-democratic scenario, for the three-lepton search. The contours bound the mass regions excluded at 95% CL assuming the NLO cross sections for a branching fraction of 50%, as appropriate for the visible decay products in this scenario. The contours based on the observations are shown; in addition, the expected bound is shown.
Figure 15: The shading in the $m_{\tilde{\chi}^0_1}$ versus $m_{\tilde{\chi}^0_2}$ ($m_{\tilde{\chi}^\pm_1}$) plane indicates the 95% CL upper limit on the chargino-neutralino production cross section times branching fraction in the flavor-democratic scenario, for the combined analysis of the three-lepton search and the same-sign dilepton search. The contours bound the mass regions excluded at 95% CL assuming the NLO cross sections for a branching fraction of 50%, as appropriate for the visible decay products in this scenario. The contours based on the observations are shown for the combination; in addition, the expected combined bound is shown. Other contours show separate mass exclusions for the three-lepton search and the same-sign dilepton search alone.
Figure 16: The exclusion contours for the $\tau$-enriched scenario corresponding to the results in Fig. 14, for (left) and (right) the combination of the three-lepton searches with SS dilepton analysis, and (bottom) the three-lepton searches.
 
  Figure 17: The exclusion contours for $\tau$-dominated scenario corresponding to results in Fig. 14.
  Figure 18: Interpretation of the dilepton ${\rm WZ} + E_{\rm T}^{\rm miss}$ and three-lepton results. The dilepton observed, three-lepton observed, their combination, and combined expected contours are shown.
  Figure 19: Interpretation of the Z+dijet and four-lepton analyses in the GMSB model discussed in the text. The observed and expected cross section upper limits are indicated as a function of the mass parameter $\mu$, and are compared to the theory cross section. The region $\mu &amp;lt; 370~{\rm GeV}$ is excluded at 95% confidence level.
Figure 20: Limits on chargino pair production (left) and slepton pair production (right) cross section times branching ratio for charginos and sleptons decaying as in Fig. 3.

Figure 21: Summary of results for chargino-neutralino production with decays to left-handed sleptons, right-handed sleptons, or direct decays to vector bosons, and chargino-pair production. Where applicable, the $x_{\tilde{\ell}}$ value used to calculate the slepton mass is 0.5.

Additional Material

Additional Material for Interpretations

Tables and Figures Abbreviated Caption
The interpretation of the WZ+MET model in Fig. 18, separately for the three-lepton results (left) and the Z(ll) + dijet results (right).
  Summary of quantitative mass limits in the various models.

Three-lepton search results

Tables and Figures Abbreviated Caption
Response (left) and resolution (right) for u1 (top) and u2 (bottom) in Drell-Yan and WZ simulation.
Left: $E_{\rm T}^{\rm miss}$ spectrum for internal and external conversions in data. The curves have been normalized to the event yields in the smallest sample (the internal conversions) to allow a better shape comparison. Right: Rayleigh-fit to the data $E_{\rm T}^{\rm miss}$ spectrum for di-lepton mass outside the Z mass window and tri-lepton mass inside the Z mass window, this sample is highly enriched in ${\rm Z}\gamma(^{*})$.
  Tight-to-Loose ratio of tau lepton measured in CS. It is used in SS+tau channel.
$M_{\rm T}$ distribution for three-lepton events with an ${\rm ee}$ or $\mu\mu$ OSSF dilepton pair, where the third lepton is either an electron or a muon.
 
$M_{\rm T}$ distribution for three-lepton events without an ${\rm ee}$ or $\mu\mu$ OSSF dilepton pair.
Performance of the non-prompt lepton background estimation method in simulation.

Search in the four-lepton final state

Efficiency ratio vs Rdxy ("b-ness of events") for muons and electrons.
ft-fsb for taus with Pt between 40 and 60 GeV (ft is the fake-rate for taus and fsb is inversely proportional to jet activity)
ft-fsb for taus with Pt between 20 and 40 GeV (ft is the fake-rate for taus and fsb is inversely proportional to jet activity)
3-muon invariant mass showing asymmetric internal conversion.

Search in the WZ/ZZ + MET final state with two leptons and two jets

Tables and Figures Abbreviated Caption
The observed MET distribution compared to the sum of the expected backgrounds in the dijet mass Mjj > 110 GeV control region.
Summary of observed yields compared to the sum of the expected backgrounds in the dijet mass Mjj > 110 GeV control region.
Data vs. MC comparison of the dilepton mass after an inclusive dilepton selection.
Comparison of data vs. MC yields in the Z mass window after an inclusive dilepton selection.
Data vs. MC comparison of the dilepton mass after the preselection of the Z(ll)V(jj) search.
Comparison of data vs. MC yields in the Z mass window after the preselection of the Z(ll)V(jj) search.
Validation of the WZ MC in a 3l control region.
Validation of the ZZ MC in a 4l control region.
Data vs. MC comparison of the dijet mass after the preselection of the Z(ll)V(jj) search.

Search in the same-sign two-lepton final state

Tables and Figures Abbreviated Caption
  Charge miss-identification probability for electrons as a function of the electron pt.
Fake ratios for electrons vs pT and eta.
Fake ratios for electrons vs pT and eta.
Prompt ratios for electrons and muons vs pT.
  MET distribution in a WZ-enriched sample, differences between data-MC are taken as syst. error for WZ background prediction.
Observed and predicted background Njets and Nbjets distribution for the events passing the baseline selection.
  Expected and observed yields in the baseline region showing different channel separately. .

Searches in the final state with non-resonant opposite-sign dileptons

Tables and Figures Abbreviated Caption
Simulated distribution of the MCTPerp distributions of Standard Model backgrounds and two signal models. The left plots shows the opposite-flavor channel, while the right shows the same-flavor.
Comparison of the MCT⊥ shapes of the top control region versus the true top shapes in Monte Carlo simulation in events where the two leptons are of the opposite (a) and same (b) flavor. The Monte Carlo truth histograms from different processes are stacked and their sum normalized to one.
Comparison of data and Monte Carlo simulation with all preselection cuts applied. We require three leptons, two of which form an invariant mass consistent with a Z boson. In this region WZ background is dominant, and we see good agreement between data and simulation. A two-sample KS test comparing the data and the WZ simulation gives a p-value of 0.23.
Comparison of data and Monte Carlo simulation with all preselection cuts applied, but the Z mass veto inverted in the same flavor channel. In the low MCT⊥ region, the Z/γ∗ background dominates. Discrepancies from this plot are used to assign a shape systematic to the Z template. In the high MCT⊥ region, the ZZ background dominates, and we see that the agreement is quite good. Y-axis scales are a) log and b) linear.
  Comparison of the MCT⊥ shapes of the non-prompt control region versus the true W+Jets and semileptonic tt shape in Monte Carlo simulation. The shaded region indicates the statistical uncertainty on the signal-region Monte Carlo, which, unlike in other regions, is non- negligible.
  Monte Carlo closure test of the flavor symmetric background template. The flavor symmetric histogram includes top, WW, and WZ backgrounds.

Electronic version of interpretations and acceptance maps

Interpretations

The root files contain TCanvas with corresponding plot
Model Specification Analysis Link to the file
Chargino-Neutralino Production Flavor-democratic, x=0.5, need to add 50% penalty in case of left-handed sleptons 3l Flavor-democratic x=0.5
Chargino-Neutralino Production Flavor-democratic, x=0.05, need to add 50% penalty in case of left-handed sleptons 3l + SS Flavor-democratic x=0.05
Chargino-Neutralino Production Flavor-democratic, x=0.95, need to add 50% penalty in case of left-handed sleptons 3l + SS Flavor-democratic x=0.95
Chargino-Neutralino Production Tau-enriched, x=0.5, no penalty 3l Tau-enriched x=0.5
Chargino-Neutralino Production Tau-enriched, x=0.05, no penalty 3l + SS Tau-enriched x=0.05
Chargino-Neutralino Production Tau-enriched, x=0.95, no penalty 3l + SS Tau-enriched x=0.95
Chargino-Neutralino Production Tau-dominated, x=0.5, no penalty 3l Tau-dominated x=0.5
Chargino-Neutralino Production WZ, need to add 10.1% penalty for Z BF 3l + 2l2j Intermediate WZ
Chargino-Chargino Production Decay via sleptons and sneutrinos OS MCT Chargino-Chargino
Slepton-Slepton Production Only smuons and selectrons OS MCT Slepton-Slepton

3 Lepton Analysis

The root files contain the efficiencies for the signal regions used in the limits for the given model.
Model Specification Analysis Link to the file
Chargino-Neutralino Production Flavor-democratic, x=0.5, need to add 50% penalty in case of left-handed sleptons 3l Flavor-democratic x=0.5
Chargino-Neutralino Production Flavor-democratic, x=0.05, need to add 50% penalty in case of left-handed sleptons 3l Flavor-democratic x=0.05
Chargino-Neutralino Production Flavor-democratic, x=0.95, need to add 50% penalty in case of left-handed sleptons 3l Flavor-democratic x=0.95
Chargino-Neutralino Production Tau-enriched, x=0.5, no penalty 3l Tau-enriched x=0.5
Chargino-Neutralino Production Tau-enriched, x=0.05, no penalty 3l Tau-enriched x=0.05
Chargino-Neutralino Production Tau-enriched, x=0.95, no penalty 3l Tau-enriched x=0.95
Chargino-Neutralino Production Tau-dominated, x=0.5, no penalty 3l Tau-dominated x=0.5
Chargino-Neutralino Production WZ, need to add 10.1% penalty for Z BF 3l Intermediate WZ

Opposite-Sign Analysis using MCT

These files contain the signal efficiencies in the MCTPerp > 120 GeV region for the cut-based analysis. The CSV files have a header row describing the fields. "mass1" refers to the pair-produced particle and "mass2" refers to the LSP. The uncertainty on the acceptance is purely statistical. No systematics are included.
Model Specification Analysis Link to the file
Chargino-Chargino Production Decay via sleptons and sneutrinos OS MCT Chargino-Chargino
Slepton-Slepton Production Only smuons and selectrons OS MCT Slepton-Slepton
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Unknown file formatroot TChiSlepSnu_largex.root r1 manage 187.2 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiSlepSnu_largex_enriched.root r1 manage 159.1 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiSlepSnu_middlex.root r1 manage 247.3 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiSlepSnu_middlex_enriched.root r1 manage 210.4 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiSlepSnu_smallx.root r1 manage 224.0 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiSlepSnu_smallx_enriched.root r1 manage 131.7 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiStauSnu.root r1 manage 93.9 K 2013-07-15 - 11:22 PieterEveraerts  
Unknown file formatroot TChiWZ.root r1 manage 161.6 K 2013-07-15 - 11:22 PieterEveraerts  
PDFpdf TChipmSlepSnuDiagram.pdf r1 manage 14.5 K 2013-07-10 - 10:15 LesyaShchutska  
PNGpng TChipmSlepSnuDiagram.pdf_thumb.png r2 r1 manage 23.0 K 2013-07-10 - 10:26 LesyaShchutska  
Unknown file formatcsv TChipmSlepSnu_acceptance.csv r1 manage 55.8 K 2013-07-16 - 00:46 NicholasEggert  
PDFpdf TChiwz.pdf r1 manage 12.6 K 2013-07-10 - 10:15 LesyaShchutska  
PNGpng TChiwz.pdf_thumb.png r2 r1 manage 23.1 K 2013-07-10 - 10:26 LesyaShchutska  
PDFpdf TChizz.pdf r1 manage 11.2 K 2013-07-10 - 10:15 LesyaShchutska  
PNGpng TChizz.pdf_thumb.png r2 r1 manage 17.0 K 2013-07-10 - 10:26 LesyaShchutska  
PDFpdf TLTau.pdf r1 manage 14.0 K 2013-07-16 - 16:40 NikolozSkhirtladze  
PNGpng TLTau.png r1 manage 15.3 K 2013-07-16 - 16:54 NikolozSkhirtladze  
PDFpdf TSlepSlepDiagram.pdf r1 manage 11.1 K 2013-07-10 - 10:16 LesyaShchutska  
PNGpng TSlepSlepDiagram.pdf_thumb.png r2 r1 manage 21.0 K 2013-07-10 - 10:26 LesyaShchutska  
Unknown file formatcsv TSlepSlep_acceptance.csv r1 manage 8.4 K 2013-07-16 - 00:46 NicholasEggert  
PDFpdf Table1.pdf r2 r1 manage 85.8 K 2013-07-18 - 00:01 LesyaShchutska  
PNGpng Table1.png r2 r1 manage 358.6 K 2013-07-18 - 00:01 LesyaShchutska  
PDFpdf Table10.pdf r1 manage 52.0 K 2013-07-10 - 15:36 LesyaShchutska  
PNGpng Table10.png r1 manage 122.8 K 2013-07-10 - 15:36 LesyaShchutska  
PDFpdf Table2.pdf r2 r1 manage 83.3 K 2013-07-18 - 00:01 LesyaShchutska  
PNGpng Table2.png r2 r1 manage 288.6 K 2013-07-18 - 00:01 LesyaShchutska  
PDFpdf Table3.pdf r2 r1 manage 82.8 K 2013-07-18 - 00:01 LesyaShchutska  
PNGpng Table3.png r2 r1 manage 277.3 K 2013-07-18 - 00:01 LesyaShchutska  
PDFpdf Table4.pdf r2 r1 manage 83.4 K 2013-07-18 - 00:01 LesyaShchutska  
PNGpng Table4.png r2 r1 manage 291.3 K 2013-07-18 - 00:01 LesyaShchutska  
PDFpdf Table5.pdf r1 manage 62.4 K 2013-07-10 - 14:09 LesyaShchutska  
PNGpng Table5.png r1 manage 194.8 K 2013-07-10 - 14:09 LesyaShchutska  
PDFpdf Table6.pdf r1 manage 71.3 K 2013-07-10 - 14:25 LesyaShchutska  
PNGpng Table6.png r1 manage 123.5 K 2013-07-10 - 14:25 LesyaShchutska  
PDFpdf Table7.pdf r2 r1 manage 67.5 K 2013-07-14 - 23:32 LesyaShchutska  
PNGpng Table7.png r2 r1 manage 452.3 K 2013-07-14 - 23:32 LesyaShchutska  
PDFpdf Table8.pdf r1 manage 88.8 K 2013-07-10 - 15:36 LesyaShchutska  
PNGpng Table8.png r1 manage 167.0 K 2013-07-10 - 15:36 LesyaShchutska  
PDFpdf Table9.pdf r1 manage 74.0 K 2013-07-10 - 15:36 LesyaShchutska  
PNGpng Table9.png r1 manage 188.2 K 2013-07-10 - 15:36 LesyaShchutska  
PDFpdf WZ_19p5fb.pdf r1 manage 24.5 K 2013-07-14 - 23:57 BenHooberman  
PNGpng WZ_19p5fb.png r1 manage 80.8 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf ZDIJET_metDistribution.pdf r1 manage 18.9 K 2013-07-10 - 14:52 LesyaShchutska  
PNGpng ZDIJET_metDistribution.pdf_thumb.png r1 manage 95.6 K 2013-07-10 - 14:52 LesyaShchutska  
PDFpdf ZDIJET_mllDistribution.pdf r1 manage 16.9 K 2013-07-10 - 14:52 LesyaShchutska  
PNGpng ZDIJET_mllDistribution.pdf_thumb.png r1 manage 59.9 K 2013-07-10 - 14:52 LesyaShchutska  
PDFpdf ZZ_19p5fb.pdf r1 manage 24.1 K 2013-07-14 - 23:57 BenHooberman  
PNGpng ZZ_19p5fb.png r1 manage 81.5 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf adtest.pdf r2 r1 manage 148.2 K 2013-07-10 - 23:53 LesyaShchutska  
PNGpng adtest.png r1 manage 48.4 K 2013-07-10 - 23:53 LesyaShchutska  
PDFpdf btp_met.pdf r2 r1 manage 16.7 K 2013-07-14 - 23:49 LesyaShchutska  
PNGpng btp_met.png r2 r1 manage 13.3 K 2013-07-14 - 23:49 LesyaShchutska  
PDFpdf btp_mt.pdf r1 manage 17.5 K 2013-07-14 - 15:37 LesyaShchutska  
PNGpng btp_mt.png r1 manage 13.8 K 2013-07-14 - 15:37 LesyaShchutska  
PDFpdf closure_fake.pdf r1 manage 235.1 K 2013-07-10 - 19:44 NicholasEggert  
PNGpng closure_fake.png r1 manage 51.0 K 2013-07-10 - 19:44 NicholasEggert  
PDFpdf closure_fs.pdf r1 manage 242.1 K 2013-07-10 - 19:46 NicholasEggert  
PNGpng closure_fs.png r1 manage 64.5 K 2013-07-10 - 19:46 NicholasEggert  
PDFpdf closure_top_of.pdf r1 manage 239.5 K 2013-07-10 - 19:46 NicholasEggert  
PNGpng closure_top_of.png r1 manage 53.0 K 2013-07-10 - 19:46 NicholasEggert  
PDFpdf closure_top_sf.pdf r1 manage 241.5 K 2013-07-10 - 19:46 NicholasEggert  
PNGpng closure_top_sf.png r1 manage 54.4 K 2013-07-10 - 19:46 NicholasEggert  
PDFpdf data_mc_3l.pdf r2 r1 manage 252.9 K 2013-07-15 - 23:27 NicholasEggert  
PNGpng data_mc_3l.png r2 r1 manage 83.4 K 2013-07-15 - 23:28 NicholasEggert  
PDFpdf data_mc_3l_linear.pdf r1 manage 252.0 K 2013-07-15 - 23:28 NicholasEggert  
PNGpng data_mc_3l_linear.png r1 manage 62.8 K 2013-07-15 - 23:28 NicholasEggert  
PDFpdf data_mc_z.pdf r2 r1 manage 259.6 K 2013-07-15 - 23:28 NicholasEggert  
PNGpng data_mc_z.png r2 r1 manage 81.2 K 2013-07-15 - 23:28 NicholasEggert  
PDFpdf data_mc_z_linear.pdf r2 r1 manage 258.3 K 2013-07-15 - 23:28 NicholasEggert  
PNGpng data_mc_z_linear.png r2 r1 manage 60.5 K 2013-07-15 - 23:28 NicholasEggert  
PDFpdf dilmass_19p5fb.pdf r1 manage 32.5 K 2013-07-14 - 23:57 BenHooberman  
PNGpng dilmass_19p5fb.png r1 manage 122.4 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf dilmass_19p5fb_table.pdf r1 manage 72.5 K 2013-07-14 - 23:57 BenHooberman  
PNGpng dilmass_19p5fb_table.png r1 manage 234.9 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf dilmass_19p5fb_targeted_table.pdf r1 manage 63.7 K 2013-07-14 - 23:57 BenHooberman  
PNGpng dilmass_19p5fb_targeted_table.png r1 manage 180.6 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf dilmass_targeted_19p5fb.pdf r1 manage 23.9 K 2013-07-14 - 23:57 BenHooberman  
PNGpng dilmass_targeted_19p5fb.png r1 manage 111.5 K 2013-07-14 - 23:57 BenHooberman  
PDFpdf exclusion_Combined.pdf r2 r1 manage 17.2 K 2013-07-14 - 19:37 LesyaShchutska  
PNGpng exclusion_Combined.pdf_thumb.png r4 r3 r2 r1 manage 402.4 K 2013-07-20 - 17:13 LesyaShchutska  
PDFpdf exclusion_GMSB.pdf r1 manage 15.3 K 2013-07-10 - 16:14 LesyaShchutska  
PNGpng exclusion_GMSB.pdf_thumb.png r1 manage 63.6 K 2013-07-10 - 16:14 LesyaShchutska  
PDFpdf exclusion_TChiSlepSnu_2a_0_05.pdf r2 r1 manage 25.4 K 2013-07-14 - 19:37 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2a_0_05.pdf_thumb.png r2 r1 manage 110.6 K 2013-07-14 - 19:37 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2a_0_05.root r1 manage 46.7 K 2013-07-18 - 15:30 FedorRatnikov  
PDFpdf exclusion_TChiSlepSnu_2a_0_5.pdf r2 r1 manage 25.0 K 2013-07-14 - 19:37 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2a_0_5.pdf_thumb.png r2 r1 manage 106.8 K 2013-07-14 - 19:37 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2a_0_5.root r1 manage 44.8 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiSlepSnu_2a_0_95.pdf r2 r1 manage 25.4 K 2013-07-14 - 19:37 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2a_0_95.pdf_thumb.png r2 r1 manage 111.7 K 2013-07-14 - 19:37 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2a_0_95.root r1 manage 48.1 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiSlepSnu_2i_0_05.pdf r2 r1 manage 25.5 K 2013-07-14 - 19:38 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2i_0_05.pdf_thumb.png r2 r1 manage 113.0 K 2013-07-14 - 19:38 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2i_0_05.root r1 manage 42.8 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiSlepSnu_2i_0_5.pdf r2 r1 manage 25.3 K 2013-07-14 - 19:38 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2i_0_5.pdf_thumb.png r2 r1 manage 108.4 K 2013-07-14 - 19:38 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2i_0_5.root r1 manage 41.4 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiSlepSnu_2i_0_95.pdf r2 r1 manage 25.3 K 2013-07-14 - 19:38 LesyaShchutska  
PNGpng exclusion_TChiSlepSnu_2i_0_95.pdf_thumb.png r2 r1 manage 113.3 K 2013-07-14 - 19:38 LesyaShchutska  
Unknown file formatroot exclusion_TChiSlepSnu_2i_0_95.root r1 manage 44.0 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiStauSnu_0_5.pdf r2 r1 manage 22.3 K 2013-07-14 - 19:38 LesyaShchutska  
PNGpng exclusion_TChiStauSnu_0_5.pdf_thumb.png r2 r1 manage 84.8 K 2013-07-14 - 19:38 LesyaShchutska  
Unknown file formatroot exclusion_TChiStauSnu_0_5.root r1 manage 43.0 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChiWZ.pdf r3 r2 r1 manage 25.2 K 2013-07-16 - 16:13 BenHooberman  
PNGpng exclusion_TChiWZ.pdf_thumb.png r3 r2 r1 manage 239.7 K 2013-07-16 - 16:19 BenHooberman  
Unknown file formatroot exclusion_TChiWZ.root r1 manage 35.3 K 2013-07-18 - 15:25 FedorRatnikov  
Unknown file formatroot exclusion_TChiWZ_2l2j.root r1 manage 37.5 K 2013-07-18 - 15:25 FedorRatnikov  
Unknown file formatroot exclusion_TChiWZ_3l.root r1 manage 36.2 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf exclusion_TChipmSlepSnu.pdf r2 r1 manage 24.0 K 2013-07-14 - 19:37 LesyaShchutska  
PNGpng exclusion_TChipmSlepSnu.pdf_thumb.png r2 r1 manage 94.1 K 2013-07-14 - 19:37 LesyaShchutska  
Unknown file formatroot exclusion_TChipmSlepSnu.root r1 manage 45.5 K 2013-07-18 - 15:30 FedorRatnikov  
PDFpdf exclusion_TSlepSlep.pdf r2 r1 manage 21.4 K 2013-07-14 - 19:39 LesyaShchutska  
PNGpng exclusion_TSlepSlep.pdf_thumb.png r2 r1 manage 75.4 K 2013-07-14 - 19:39 LesyaShchutska  
Unknown file formatroot exclusion_TSlepSlep.root r1 manage 43.7 K 2013-07-18 - 15:25 FedorRatnikov  
PDFpdf fourLeptons_METvsMll.pdf r1 manage 16.4 K 2013-07-10 - 14:09 LesyaShchutska  
PNGpng fourLeptons_METvsMll.pdf_thumb.png r1 manage 50.6 K 2013-07-10 - 14:09 LesyaShchutska  
PDFpdf fsr_mu3_invmass_19p5ifb_twiki.pdf r1 manage 19.2 K 2013-07-15 - 09:51 PeterThomassen  
PNGpng fsr_mu3_invmass_19p5ifb_twiki.png r1 manage 90.1 K 2013-07-15 - 09:51 PeterThomassen  
PDFpdf internal_externalconversions.pdf r1 manage 15.0 K 2013-07-14 - 15:42 LesyaShchutska  
PNGpng internal_externalconversions.png r1 manage 93.3 K 2013-07-14 - 15:42 LesyaShchutska  
PDFpdf limits_summary_table.pdf r2 r1 manage 178.3 K 2013-07-18 - 01:24 BenHooberman  
PNGpng limits_summary_table.png r2 r1 manage 205.9 K 2013-07-18 - 01:24 BenHooberman  
PDFpdf mc_only_of.pdf r1 manage 236.1 K 2013-07-10 - 19:47 NicholasEggert  
PNGpng mc_only_of.png r1 manage 80.4 K 2013-07-10 - 19:47 NicholasEggert  
PDFpdf mc_only_sf.pdf r1 manage 236.4 K 2013-07-10 - 19:47 NicholasEggert  
PNGpng mc_only_sf.png r1 manage 79.5 K 2013-07-10 - 19:47 NicholasEggert  
PDFpdf mjj_targeted_19p5fb.pdf r1 manage 72.6 K 2013-07-15 - 00:08 BenHooberman  
PNGpng mjj_targeted_19p5fb.png r1 manage 130.2 K 2013-07-15 - 00:08 BenHooberman  
PDFpdf mt_Mll_3l_scatter.pdf r1 manage 40.1 K 2013-07-10 - 11:04 LesyaShchutska  
PNGpng mt_Mll_3l_scatter.pdf_thumb.png r1 manage 84.9 K 2013-07-10 - 11:04 LesyaShchutska  
PDFpdf mt_Mll_OSemutau_scatter.pdf r1 manage 18.2 K 2013-07-10 - 11:04 LesyaShchutska  
PNGpng mt_Mll_OSemutau_scatter.pdf_thumb.png r1 manage 71.3 K 2013-07-10 - 11:04 LesyaShchutska  
PDFpdf mt_Mll_SStau_scatter.pdf r1 manage 15.6 K 2013-07-10 - 11:04 LesyaShchutska  
PNGpng mt_Mll_SStau_scatter.pdf_thumb.png r1 manage 42.7 K 2013-07-10 - 11:04 LesyaShchutska  
PDFpdf mt_Mll_noOSSF_scatter.pdf r1 manage 14.9 K 2013-07-10 - 11:04 LesyaShchutska  
PNGpng mt_Mll_noOSSF_scatter.pdf_thumb.png r1 manage 39.9 K 2013-07-10 - 11:04 LesyaShchutska  
PDFpdf ossf0tau0.pdf r1 manage 22.3 K 2013-07-10 - 11:04 LesyaShchutska  
PNGpng ossf0tau0.pdf_thumb.png r1 manage 102.8 K 2013-07-10 - 11:04 LesyaShchutska  
PDFpdf ossf0tau1.pdf r1 manage 22.0 K 2013-07-10 - 11:05 LesyaShchutska  
PNGpng ossf0tau1.pdf_thumb.png r1 manage 93.3 K 2013-07-10 - 11:05 LesyaShchutska  
PDFpdf ossf0tau1_C2.pdf r1 manage 22.6 K 2013-07-10 - 11:05 LesyaShchutska  
PNGpng ossf0tau1_C2.pdf_thumb.png r1 manage 112.4 K 2013-07-10 - 11:05 LesyaShchutska  
PDFpdf ossf1tau0.pdf r1 manage 28.1 K 2013-07-10 - 11:05 LesyaShchutska  
PNGpng ossf1tau0.pdf_thumb.png r1 manage 99.0 K 2013-07-10 - 11:05 LesyaShchutska  
PDFpdf ossf1tau1.pdf r1 manage 27.4 K 2013-07-10 - 11:05 LesyaShchutska  
PNGpng ossf1tau1.pdf_thumb.png r1 manage 103.6 K 2013-07-10 - 11:05 LesyaShchutska  
PNGpng pfmet_reweight_mu_u1.png r1 manage 10.9 K 2013-07-14 - 15:48 LesyaShchutska  
PNGpng pfmet_reweight_mu_u2.png r1 manage 9.5 K 2013-07-14 - 15:48 LesyaShchutska  
PNGpng pfmet_reweight_sigma0_u1.png r1 manage 9.4 K 2013-07-14 - 15:48 LesyaShchutska  
PNGpng pfmet_reweight_sigma0_u2.png r1 manage 9.3 K 2013-07-14 - 15:48 LesyaShchutska  
PDFpdf toymc_bias_400_100.pdf r1 manage 10.9 K 2013-07-10 - 19:47 NicholasEggert  
PNGpng toymc_bias_400_100.png r1 manage 35.9 K 2013-07-10 - 19:47 NicholasEggert  
PDFpdf toymc_pull_400_100_10.pdf r1 manage 7.6 K 2013-07-10 - 19:48 NicholasEggert  
PNGpng toymc_pull_400_100_10.png r1 manage 14.3 K 2013-07-10 - 19:48 NicholasEggert  
PDFpdf zllvjj_validation.pdf r1 manage 43.9 K 2013-07-14 - 23:44 BenHooberman Z(ll)V(jj) validation plots
PNGpng zllvjj_validation.png r1 manage 55.0 K 2013-07-14 - 23:44 BenHooberman Z(ll)V(jj) validation plots
PDFpdf zllvjj_validation_table.pdf r1 manage 138.6 K 2013-07-14 - 23:44 BenHooberman Z(ll)V(jj) validation plots
PNGpng zllvjj_validation_table.png r1 manage 267.5 K 2013-07-14 - 23:44 BenHooberman Z(ll)V(jj) validation plots
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Topic revision: r3 - 2013-07-20 - LesyaShchutska
 
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