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Comparing UserCode/benhoob/cmsnotes/ZMet2012/yields.tex (file contents):
Revision 1.9 by benhoob, Thu Jan 17 16:57:50 2013 UTC vs.
Revision 1.10 by benhoob, Fri Jan 25 12:19:52 2013 UTC

# Line 22 | Line 22 | of integrated luminosity (4.5\%), trigge
22            Dilepton mass distribution for events with two selected leptons
23            in the ee (left) and $\mu\mu$ (right) final states.}
24  
25 < %Loading babies at       : ../output/V00-02-02
25 > %Loading babies at       : ../output/V00-02-13
26   %Using selection         : (((((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0)))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0)
27   %Using weight            : weight * 19.5 * trgeff * vtxweight
28   %Plotting var dilmass flavor ee
29   %compareDataMC : apply trigeff 1
30 < %MC yield VVV 55.85
30 > %MC yield VVV 46.80
31   %MC yield ttV 110.19
32   %MC yield WW 3487.10
33   %MC yield single top 1798.02
34 < %MC yield ttbar 18957.21
35 < %MC yield ZZ 5338.77
34 > %MC yield ttbar 18784.90
35 > %MC yield ZZ 5335.59
36   %MC yield WZ 5014.99
37 < %MC yield zjets 5404260.14
38 < %MC total yield 5439022.50
39 < %data yield 5.60831e+06
37 > %MC yield zjets 5412155.17
38 > %MC total yield 5446733.00
39 > %data yield 5.60839e+06
40   %Plotting var dilmass flavor mm
41   %compareDataMC : apply trigeff 1
42   %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
43 < %MC yield VVV 69.64
44 < %MC yield ttV 136.01
45 < %MC yield WW 4610.46
46 < %MC yield single top 2321.96
47 < %MC yield ttbar 23578.38
48 < %MC yield ZZ 6981.84
49 < %MC yield WZ 6484.48
50 < %MC yield zjets 7406868.73
51 < %MC total yield 7451051.50
52 < %data yield 7.44536e+06
43 > %MC yield VVV 55.66
44 > %MC yield ttV 130.83
45 > %MC yield WW 4360.91
46 > %MC yield single top 2219.78
47 > %MC yield ttbar 22376.46
48 > %MC yield ZZ 6658.82
49 > %MC yield WZ 6187.59
50 > %MC yield zjets 7012986.51
51 > %MC total yield 7054976.50
52 > %data yield 7.44544e+06
53  
54    \end{center}
55   \end{figure}
# Line 60 | Line 60 | of integrated luminosity (4.5\%), trigge
60   \caption{\label{table:zyields} Data and Monte Carlo yields for events with two selected leptons in the Z mass window. }
61   \begin{tabular}{lccccc}
62  
63 <
64 < %Loading babies at       : ../output/V00-02-02
63 > %Loading babies at       : ../output/V00-02-13
64   %Using selection         : ((((((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0)))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0))&&(dilmass>81 && dilmass<101)
65   %Using weight            : weight * 19.5 * trgeff * vtxweight
66  
# Line 69 | Line 68 | of integrated luminosity (4.5\%), trigge
68   \hline
69           Sample   &             ee   &       $\mu\mu$   &         e$\mu$   &          total  \\
70   \hline
71 <         \zjets   &4784691.5 $\pm$ 3465.8   &6575638.5 $\pm$ 3907.6   &2294.1 $\pm$ 74.6   &11362624.1 $\pm$ 5223.7  \\
72 <         \ttbar   &3355.3 $\pm$ 46.1   &4222.2 $\pm$ 49.8   &7624.2 $\pm$ 68.4   &15201.7 $\pm$ 96.3  \\
73 <             WZ   &4342.7 $\pm$ 7.3   &5671.8 $\pm$ 8.0   &114.0 $\pm$ 1.1   &10128.5 $\pm$ 10.9  \\
74 <             ZZ   &4715.2 $\pm$ 9.9   &6192.8 $\pm$ 11.0   & 20.8 $\pm$ 0.3   &10928.8 $\pm$ 14.8  \\
75 <             WW   &614.8 $\pm$ 6.0   &816.3 $\pm$ 6.6   &1417.8 $\pm$ 8.9   &2848.9 $\pm$ 12.7  \\
76 <     single top   &315.3 $\pm$ 11.9   &406.4 $\pm$ 13.0   &701.8 $\pm$ 17.4   &1423.5 $\pm$ 24.8  \\
77 <           \ttV   & 57.4 $\pm$ 1.1   & 70.5 $\pm$ 1.1   & 21.5 $\pm$ 0.7   &149.5 $\pm$ 1.7  \\
78 <            VVV   & 38.9 $\pm$ 0.4   & 49.1 $\pm$ 0.4   &  6.9 $\pm$ 0.2   & 94.9 $\pm$ 0.6  \\
71 >         \zjets   &4776593 $\pm$ 3391   &6227613 $\pm$ 3627   &2328 $\pm$ 73.9   &11006533 $\pm$ 4966  \\
72 >         \ttbar   &3321.1 $\pm$ 45.8        &4014.4 $\pm$ 47.6        &7621.3 $\pm$ 68.7   &14956.8 $\pm$ 95.3  \\
73 >             WW   &614.8 $\pm$ 6.0          &773.7 $\pm$ 6.3          &1433.1 $\pm$ 9.0    &2821.7 $\pm$ 12.6  \\
74 >             WZ   &4342.7 $\pm$ 7.3         &5411.7 $\pm$ 7.7         &115.3 $\pm$ 1.1     &9869.7 $\pm$ 10.6  \\
75 >             ZZ   &4712.8 $\pm$ 9.9         &5906.1 $\pm$ 10.5        & 21.0 $\pm$ 0.3     &10639.8 $\pm$ 14.4  \\
76 >     single top   &315.3 $\pm$ 11.9         &388.4 $\pm$ 12.4         &709.5 $\pm$ 17.6    &1413.2 $\pm$ 24.6  \\
77 >           \ttV   & 57.4 $\pm$ 1.1          & 68.1 $\pm$ 1.1          & 21.8 $\pm$ 0.7     &147.3 $\pm$ 1.7  \\
78 >            VVV   & 30.1 $\pm$ 0.3          & 36.4 $\pm$ 0.4          &  6.9 $\pm$ 0.2     & 73.5 $\pm$ 0.5  \\
79   \hline
80 <    total SM MC   &4798131.5 $\pm$ 3466.2   &6593068.0 $\pm$ 3908.0   &12201.2 $\pm$ 103.0   &11403400.7 $\pm$ 5224.7  \\
80 >    total SM MC   &4789987.0 $\pm$ 3391.1   &6244211.0 $\pm$ 3627.1   &12256.7 $\pm$ 102.8   &11046454.7 $\pm$ 4966.5  \\
81   \hline
82 <           data   &        4906900   &        6552528   &          13141   &       11472569  \\
82 >           data   &        4906970   &        6552612   &          13141   &       11472723  \\
83   \hline
84   \hline
85  
# Line 110 | Line 109 | in the inclusive preselection region are
109            Dilepton mass distribution for events in the preselection region of the inclusive search
110            in the ee (left) and $\mu\mu$ (right) final states.}
111  
112 < %Loading babies at       : ../output/V00-02-02
112 > %Loading babies at       : ../output/V00-02-13
113   %-------------------------------------
114   %USING SKIMMED SAMPLES WITH NJETS >= 2
115   %-------------------------------------
# Line 119 | Line 118 | in the inclusive preselection region are
118   %Using weight            : weight * 19.5 * trgeff * vtxweight
119   %Plotting var dilmass flavor ee
120   %compareDataMC : apply trigeff 1
121 < %MC yield VVV 38.82
122 < %MC yield ttV 104.04
123 < %MC yield WW 426.72
124 < %MC yield single top 771.56
125 < %MC yield ttbar 14618.67
126 < %MC yield ZZ 2396.41
127 < %MC yield WZ 2080.63
128 < %MC yield zjets 268774.33
129 < %MC total yield 289211.19
130 < %data yield 291221
121 > %MC yield VVV 31.28
122 > %MC yield ttV 103.46
123 > %MC yield WW 366.01
124 > %MC yield single top 722.28
125 > %MC yield ttbar 14229.66
126 > %MC yield ZZ 2258.35
127 > %MC yield WZ 1956.41
128 > %MC yield zjets 196280.15
129 > %MC total yield 215947.61
130 > %data yield 224358
131   %Plotting var dilmass flavor mm
132   %compareDataMC : apply trigeff 1
133   %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
134 < %MC yield VVV 48.05
135 < %MC yield ttV 129.11
136 < %MC yield WW 549.24
137 < %MC yield single top 980.84
138 < %MC yield ttbar 18175.34
139 < %MC yield ZZ 3092.92
140 < %MC yield WZ 2652.19
141 < %MC yield zjets 358918.68
142 < %MC total yield 384546.38
143 < %data yield 368674
134 > %MC yield VVV 37.07
135 > %MC yield ttV 123.73
136 > %MC yield WW 444.00
137 > %MC yield single top 881.50
138 > %MC yield ttbar 16957.57
139 > %MC yield ZZ 2782.22
140 > %MC yield WZ 2384.37
141 > %MC yield zjets 246103.06
142 > %MC total yield 269713.53
143 > %data yield 281148
144  
145    \end{center}
146   \end{figure}
# Line 152 | Line 151 | in the inclusive preselection region are
151   }
152   \begin{tabular}{lccccc}
153  
154 < %Loading babies at       : ../output/V00-02-02
154 > %Loading babies at       : ../output/V00-02-13
155   %-------------------------------------
156   %USING SKIMMED SAMPLES WITH NJETS >= 2
157   %-------------------------------------
# Line 164 | Line 163 | in the inclusive preselection region are
163   \hline
164           Sample   &             ee   &       $\mu\mu$   &         e$\mu$   &          total  \\
165   \hline
166 <         \zjets   &237881.9 $\pm$ 762.8   &317954.1 $\pm$ 848.2   &121.7 $\pm$ 17.1   &555957.7 $\pm$ 1140.9  \\
167 <          ttbar   &2597.5 $\pm$ 40.5   &3268.0 $\pm$ 43.8   &5926.8 $\pm$ 60.2   &11792.4 $\pm$ 84.7  \\
168 <             WZ   &1814.8 $\pm$ 4.8   &2329.0 $\pm$ 5.3   & 22.8 $\pm$ 0.5   &4166.6 $\pm$ 7.1  \\
169 <             ZZ   &2123.3 $\pm$ 7.0   &2750.6 $\pm$ 7.7   &  4.8 $\pm$ 0.2   &4878.8 $\pm$ 10.4  \\
170 <             WW   & 69.6 $\pm$ 2.0   & 90.3 $\pm$ 2.2   &161.1 $\pm$ 3.0   &321.0 $\pm$ 4.2  \\
171 <     single top   &128.6 $\pm$ 7.6   &155.3 $\pm$ 8.0   &280.1 $\pm$ 11.0   &564.0 $\pm$ 15.6  \\
172 <           \ttV   & 55.2 $\pm$ 1.0   & 68.0 $\pm$ 1.1   & 20.0 $\pm$ 0.6   &143.2 $\pm$ 1.6  \\
173 <            VVV   & 28.7 $\pm$ 0.3   & 36.1 $\pm$ 0.3   &  3.5 $\pm$ 0.1   & 68.3 $\pm$ 0.5  \\
166 >         \zjets   &174022.4 $\pm$ 645.0   &218277.0 $\pm$ 678.9   &86.9 $\pm$ 14.4   &392386.4 $\pm$ 936.5  \\
167 >         \ttbar   &2536.3 $\pm$ 40.1   &3058.7 $\pm$ 41.6   &5824.7 $\pm$ 60.1   &11419.7 $\pm$ 83.3  \\
168 >             WW   & 59.5 $\pm$ 1.9   & 73.2 $\pm$ 1.9   &134.2 $\pm$ 2.8   &266.9 $\pm$ 3.9  \\
169 >             WZ   &1709.7 $\pm$ 4.7   &2098.1 $\pm$ 4.9   & 20.0 $\pm$ 0.4   &3827.8 $\pm$ 6.8  \\
170 >             ZZ   &2002.4 $\pm$ 6.9   &2477.2 $\pm$ 7.2   &  4.2 $\pm$ 0.2   &4483.8 $\pm$ 9.9  \\
171 >     single top   &121.2 $\pm$ 7.4   &137.7 $\pm$ 7.4   &263.7 $\pm$ 10.7   &522.6 $\pm$ 15.0  \\
172 >           \ttV   & 54.9 $\pm$ 1.0   & 65.6 $\pm$ 1.1   & 20.0 $\pm$ 0.6   &140.5 $\pm$ 1.6  \\
173 >            VVV   & 21.7 $\pm$ 0.3   & 26.2 $\pm$ 0.3   &  3.4 $\pm$ 0.1   & 51.3 $\pm$ 0.4  \\
174   \hline
175 <    total SM MC   &244699.8 $\pm$ 764.0   &326651.4 $\pm$ 849.5   &6540.8 $\pm$ 63.6   &577892.0 $\pm$ 1144.2  \\
175 >    total SM MC   &180528.1 $\pm$ 646.4   &226213.8 $\pm$ 680.2   &6357.1 $\pm$ 62.7   &413098.9 $\pm$ 940.4  \\
176   \hline
177 <           data   &         243387   &         310368   &           6416   &         560171  \\
177 >           data   &         185555   &         234132   &           6231   &         425918  \\
178   \hline
179   \hline
180  
182
183
181   \end{tabular}
182   \end{center}
183   \end{table}
# Line 219 | Line 216 | which demonstrates that the MC does a re
216            Dilepton mass distribution for events in the preselection region of the targeted search
217            in the ee (left) and $\mu\mu$ (right) final states.}
218  
219 < %Loading babies at       : ../output/V00-02-02
219 > %Loading babies at       : ../output/V00-02-13
220   %-------------------------------------
221   %USING SKIMMED SAMPLES WITH NJETS >= 2
222   %-------------------------------------
# Line 228 | Line 225 | which demonstrates that the MC does a re
225   %Using weight            : weight * 19.5 * trgeff * vtxweight
226   %Plotting var dilmass flavor ee
227   %compareDataMC : apply trigeff 1
228 < %MC yield VVV 7.33
229 < %MC yield ttV 3.58
230 < %MC yield WW 85.67
231 < %MC yield single top 45.33
232 < %MC yield ttbar 543.24
233 < %MC yield ZZ 918.93
234 < %MC yield WZ 630.62
235 < %MC yield zjets 74954.58
236 < %MC total yield 77189.27
237 < %data yield 75429
228 > %MC yield VVV 5.81
229 > %MC yield ttV 3.52
230 > %MC yield WW 65.58
231 > %MC yield single top 39.09
232 > %MC yield ttbar 515.71
233 > %MC yield ZZ 876.67
234 > %MC yield WZ 597.84
235 > %MC yield zjets 47170.90
236 > %MC total yield 49275.13
237 > %data yield 50069
238   %Plotting var dilmass flavor mm
239   %compareDataMC : apply trigeff 1
240   %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
241 < %MC yield VVV 9.03
242 < %MC yield ttV 3.68
243 < %MC yield WW 110.10
244 < %MC yield single top 60.55
245 < %MC yield ttbar 623.36
246 < %MC yield ZZ 1182.18
247 < %MC yield WZ 814.62
248 < %MC yield zjets 101116.68
249 < %MC total yield 103920.20
250 < %data yield 96236
241 > %MC yield VVV 6.89
242 > %MC yield ttV 3.44
243 > %MC yield WW 80.43
244 > %MC yield single top 51.21
245 > %MC yield ttbar 561.84
246 > %MC yield ZZ 1074.99
247 > %MC yield WZ 735.13
248 > %MC yield zjets 59467.12
249 > %MC total yield 61981.05
250 > %data yield 62950
251  
252    \end{center}
253   \end{figure}
# Line 261 | Line 258 | which demonstrates that the MC does a re
258   }
259   \begin{tabular}{lccccc}
260  
261 < %Loading babies at       : ../output/V00-02-02
261 > %Loading babies at       : ../output/V00-02-13
262   %-------------------------------------
263   %USING SKIMMED SAMPLES WITH NJETS >= 2
264   %-------------------------------------
# Line 273 | Line 270 | which demonstrates that the MC does a re
270   \hline
271           Sample   &             ee   &       $\mu\mu$   &         e$\mu$   &          total  \\
272   \hline
273 <         \zjets   &66277.1 $\pm$ 401.2   &89182.1 $\pm$ 447.5   & 26.8 $\pm$ 8.1   &155486.1 $\pm$ 601.1  \\
274 <         \ttbar   &108.2 $\pm$ 8.3   &106.6 $\pm$ 7.8   &223.6 $\pm$ 11.7   &438.4 $\pm$ 16.3  \\
275 <             WZ   &553.1 $\pm$ 2.7   &718.0 $\pm$ 3.0   &  3.6 $\pm$ 0.2   &1274.7 $\pm$ 4.0  \\
276 <             ZZ   &816.3 $\pm$ 4.4   &1052.1 $\pm$ 4.8   &  0.9 $\pm$ 0.1   &1869.3 $\pm$ 6.6  \\
277 <             WW   & 14.6 $\pm$ 0.9   & 18.3 $\pm$ 1.0   & 34.4 $\pm$ 1.4   & 67.3 $\pm$ 1.9  \\
278 <     single top   &  9.5 $\pm$ 2.1   & 10.9 $\pm$ 2.1   & 18.6 $\pm$ 2.8   & 39.0 $\pm$ 4.1  \\
279 <           \ttV   &  1.6 $\pm$ 0.2   &  1.8 $\pm$ 0.2   &  0.8 $\pm$ 0.1   &  4.2 $\pm$ 0.3  \\
280 <            VVV   &  4.8 $\pm$ 0.1   &  6.1 $\pm$ 0.1   &  0.9 $\pm$ 0.1   & 11.8 $\pm$ 0.2  \\
273 >         \zjets   &41811.7 $\pm$ 316.2   &52620.2 $\pm$ 333.3   & 19.4 $\pm$ 6.9   &94451.2 $\pm$ 459.4  \\
274 >         \ttbar   & 99.9 $\pm$ 8.0   & 95.8 $\pm$ 7.3   &215.1 $\pm$ 11.5   &410.8 $\pm$ 15.8  \\
275 >             WW   & 11.0 $\pm$ 0.8   & 14.1 $\pm$ 0.8   & 25.8 $\pm$ 1.2   & 50.9 $\pm$ 1.7  \\
276 >             WZ   &525.4 $\pm$ 2.6   &648.5 $\pm$ 2.7   &  3.1 $\pm$ 0.2   &1177.0 $\pm$ 3.8  \\
277 >             ZZ   &779.2 $\pm$ 4.3   &957.9 $\pm$ 4.5   &  0.8 $\pm$ 0.1   &1737.9 $\pm$ 6.3  \\
278 >     single top   &  9.1 $\pm$ 2.1   &  8.7 $\pm$ 1.8   & 14.0 $\pm$ 2.4   & 31.9 $\pm$ 3.7  \\
279 >           \ttV   &  1.6 $\pm$ 0.2   &  1.7 $\pm$ 0.2   &  0.8 $\pm$ 0.1   &  4.1 $\pm$ 0.3  \\
280 >            VVV   &  3.4 $\pm$ 0.1   &  4.2 $\pm$ 0.1   &  0.9 $\pm$ 0.1   &  8.5 $\pm$ 0.2  \\
281   \hline
282 <    total SM MC   &67785.3 $\pm$ 401.3   &91095.8 $\pm$ 447.6   &309.7 $\pm$ 14.6   &159190.9 $\pm$ 601.3  \\
282 >    total SM MC   &43241.2 $\pm$ 316.3   &54351.0 $\pm$ 333.4   &280.0 $\pm$ 13.7   &97872.2 $\pm$ 459.8  \\
283   \hline
284 <           data   &          65376   &          83864   &            312   &         149552  \\
284 >           data   &          43444   &          54851   &            275   &          98570  \\
285   \hline
286   \hline
287  
# Line 294 | Line 291 | which demonstrates that the MC does a re
291  
292  
293  
297 \begin{comment}
298
299 %-------------------------------------
300 % veto b-jets with CSV LOOSE
301 %-------------------------------------
302
303 \begin{figure}[hbt]
304  \begin{center}
305        \includegraphics[width=1.0\linewidth]{plots/dilmass_targeted_19fb.pdf}
306        \caption{
307          \label{fig:dilmass_2j_targeted}\protect
308          Dilepton mass distribution for events in the preselection region of the targeted search
309          in the ee (left) and $\mu\mu$ (right) final states.}
310
311 %Loading babies at       : ../output/V00-01-04
312 %-------------------------------------
313 %USING SKIMMED SAMPLES WITH NJETS >= 2
314 %-------------------------------------
315
316 %Using selection         : ((((((((isdata==0 || (run<197556 || run>198913))&&(((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0))))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0))&&(njets>=2))&&(nbcsvl==0))&&(mjj>70.0 && mjj<110.0))&&(nlep==2)
317 %Using weight            : weight * 9.2 * trgeff * vtxweight
318 %Plotting var dilmass flavor ee
319 %compareDataMC : apply trigeff 1
320 %MC yield VVV 1.69
321 %MC yield ttV 0.71
322 %MC yield WW 29.99
323 %MC yield single top 10.71
324 %MC yield ttbar 98.96
325 %MC yield ZZ 160.28
326 %MC yield WZ 201.63
327 %SCALING ZJETS BY 111/946
328 %MC yield zjets 26365.25
329 %MC total yield 26869.22
330 %data yield 24722
331 %Plotting var dilmass flavor mm
332 %compareDataMC : apply trigeff 1
333 %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
334 %MC yield VVV 2.05
335 %MC yield ttV 0.70
336 %MC yield WW 38.74
337 %MC yield single top 13.48
338 %MC yield ttbar 104.95
339 %MC yield ZZ 206.22
340 %MC yield WZ 262.27
341 %SCALING ZJETS BY 111/946
342 %MC yield zjets 35489.85
343 %MC total yield 36118.25
344 %data yield 32393
345
346  \end{center}
347 \end{figure}
348
349 \begin{table}[htb]
350 \begin{center}
351 \caption{\label{table:zyields_2j_targeted} Data and MC yields in the preselection region of the inclusive search.
352 }
353 \begin{tabular}{lccccc}
354 \hline
355 \hline
356         Sample   &           ee   &       $\mu\mu$   &         e$\mu$   &            total  \\
357 \hline
358
359 %Loading babies at       : ../output/V00-01-04
360 %-------------------------------------
361 %USING SKIMMED SAMPLES WITH NJETS >= 2
362 %-------------------------------------
363
364 %Using selection         : (((((((((isdata==0 || (run<197556 || run>198913))&&(((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0))))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0))&&(njets>=2))&&(nbcsvl==0))&&(mjj>70.0 && mjj<110.0))&&(nlep==2))&&(dilmass>81 && dilmass<101)
365 %Using weight            : weight * 9.2 * trgeff * vtxweight
366
367 \hline
368         Sample   &           $ee$   &       $\mu\mu$   &         $e\mu$   &            tot  \\
369 \hline
370 SCALING ZJETS BY 111/946
371          zjets   &23338.4 $\pm$ 164.1   &31251.5 $\pm$ 182.6   &  8.9 $\pm$ 3.1   &54598.8 $\pm$ 245.5  \\
372             WZ   &176.4 $\pm$ 1.1   &231.1 $\pm$ 1.2   &  1.1 $\pm$ 0.1   &408.7 $\pm$ 1.6  \\
373             ZZ   &142.3 $\pm$ 0.9   &183.2 $\pm$ 1.0   &  0.1 $\pm$ 0.0   &325.6 $\pm$ 1.4  \\
374          ttbar   & 20.6 $\pm$ 2.5   & 15.5 $\pm$ 2.1   & 38.1 $\pm$ 3.4   & 74.2 $\pm$ 4.7  \\
375     single top   &  2.3 $\pm$ 0.7   &  2.9 $\pm$ 0.7   &  4.5 $\pm$ 1.0   &  9.6 $\pm$ 1.4  \\
376             WW   &  5.0 $\pm$ 0.4   &  6.8 $\pm$ 0.4   & 12.3 $\pm$ 0.6   & 24.2 $\pm$ 0.8  \\
377            ttV   &  0.3 $\pm$ 0.1   &  0.3 $\pm$ 0.1   &  0.2 $\pm$ 0.0   &  0.8 $\pm$ 0.1  \\
378            VVV   &  0.9 $\pm$ 0.0   &  1.1 $\pm$ 0.0   &  0.3 $\pm$ 0.0   &  2.3 $\pm$ 0.1  \\
379 \hline
380      tot SM MC   &23686.1 $\pm$ 164.1   &31692.4 $\pm$ 182.6   & 65.7 $\pm$ 4.7   &55444.2 $\pm$ 245.5  \\
381 \hline
382           data   &          21529   &          28265   &             53   &          49847  \\
383 \hline
384 \hline
385
386 \end{tabular}
387 \end{center}
388 \end{table}
389
390 \end{comment}
391
294  
295   \clearpage
296  
297   \begin{figure}[hbt]
298    \begin{center}
299 <        \includegraphics[width=1.0\linewidth]{plots/mjj_targeted_19fb.pdf}
299 >        \includegraphics[width=1.0\linewidth]{plots/mjj_targeted_19p5fb.pdf}
300          \caption{
301            \label{fig:mjj}\protect
302   Distributions of dijet mass for the targeted preselection in the ee (left), $\mu\mu$ (middle) and e$\mu$ (right) final state.
# Line 402 | Line 304 | Distributions of dijet mass for the targ
304    \end{center}
305   \end{figure}
306  
307 <
406 <
407 < %Loading babies at       : ../output/V00-02-00
307 > %Loading babies at       : ../output/V00-02-13
308   %-------------------------------------
309   %USING SKIMMED SAMPLES WITH NJETS >= 2
310   %-------------------------------------
311  
312 < %Using selection         : ((((((((isdata==0 || (run<197556 || run>198913))&&(((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0))))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0))&&(njets>=2))&&(nbcsvm==0))&&(nlep==2))&&(dilmass>81 && dilmass<101)
313 < %Using weight            : weight * 19.3 * trgeff * vtxweight
312 > %Using selection         : (((((((((leptype==0 && (ee==1 || isdata==0))||(leptype==1 && (mm==1 || isdata==0)))||(leptype==2 && (em==1||me==1||isdata==0)))&&(csc==0 && hbhe==1 && hcallaser==1 && ecaltp==1 && trkfail==1 && eebadsc==1 && hbhenew==1))&&(lep1.pt()>20.0 && lep2.pt()>20.0))&&(dilmass>15.0))&&(njets>=2))&&(nbcsvm==0))&&(nlep==2))&&(dilmass>81 && dilmass<101)
313 > %Using weight            : weight * 19.5 * trgeff * vtxweight
314   %Plotting var mjj flavor ee
315   %compareDataMC : apply trigeff 1
316 < %MC yield VVV 12.21
317 < %MC yield ttV 7.75
318 < %MC yield WW 63.50
319 < %MC yield single top 33.64
320 < %MC yield ttbar 435.66
321 < %MC yield ZZ 859.71
322 < %MC yield WZ 1520.22
323 < %SCALING ZJETS BY 111/946
324 < %MC yield zjets 209451.48
325 < %MC total yield 212384.17
426 < %data yield 209905
316 > %MC yield VVV 13.74
317 > %MC yield ttV 7.88
318 > %MC yield WW 54.58
319 > %MC yield single top 31.79
320 > %MC yield ttbar 430.86
321 > %MC yield ZZ 1525.36
322 > %MC yield WZ 1454.36
323 > %MC yield zjets 156740.32
324 > %MC total yield 160258.89
325 > %data yield 162621
326   %Plotting var mjj flavor mm
327   %compareDataMC : apply trigeff 1
328 < %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
329 < %MC yield VVV 15.69
330 < %MC yield ttV 9.57
331 < %MC yield WW 81.36
332 < %MC yield single top 42.28
333 < %MC yield ttbar 539.62
334 < %MC yield ZZ 1113.63
335 < %MC yield WZ 1955.65
336 < %SCALING ZJETS BY 111/946
337 < %MC yield zjets 281080.79
439 < %MC total yield 284838.59
440 < %data yield 266373
328 > %MC yield VVV 16.73
329 > %MC yield ttV 9.35
330 > %MC yield WW 66.32
331 > %MC yield single top 37.51
332 > %MC yield ttbar 503.49
333 > %MC yield ZZ 1878.14
334 > %MC yield WZ 1778.58
335 > %MC yield zjets 196225.75
336 > %MC total yield 200515.88
337 > %data yield 204531
338   %Plotting var mjj flavor em
339   %compareDataMC : apply trigeff 1
340 < %Warning in <TROOT::Append>: Replacing existing TH1: htemp (Potential memory leak).
341 < %MC yield VVV 2.59
342 < %MC yield ttV 3.22
343 < %MC yield WW 143.37
344 < %MC yield single top 77.11
345 < %MC yield ttbar 1087.65
346 < %MC yield ZZ 1.32
347 < %MC yield WZ 15.18
348 < %SCALING ZJETS BY 111/946
349 < %MC yield zjets 112.51
350 < %MC total yield 1442.95
454 < %data yield 1417
340 > %MC yield VVV 2.57
341 > %MC yield ttV 3.16
342 > %MC yield WW 121.17
343 > %MC yield single top 68.54
344 > %MC yield ttbar 1055.70
345 > %MC yield ZZ 2.24
346 > %MC yield WZ 13.62
347 > %MC yield zjets 74.64
348 > %MC total yield 1341.64
349 > %data yield 1363
350 >
351  

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