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root/cvsroot/UserCode/dhidas/OSUAnalysis/Tools/scripts/plot2D.py
Revision: 1.1.1.1 (vendor branch)
Committed: Thu Dec 1 16:28:48 2011 UTC (13 years, 5 months ago) by dhidas
Content type: text/x-python
Branch: dhidas, MAIN
CVS Tags: START, HEAD
Changes since 1.1: +0 -0 lines
Log Message:
osu copy modified

File Contents

# Content
1 from __future__ import division
2
3 from tdrStyle import *
4 from ROOT import *
5
6 canvases = []
7 scanvases = []
8 counter = 0
9
10 def plotMttbar():
11 tdrstyle = setTDRStyle();
12 gStyle.SetHatchesSpacing(1.0);
13 gStyle.SetPalette(1);
14 lumi = 5000;
15 oldLumi = 5000;
16 scale = lumi / oldLumi;
17 qcdScale = {'default':1.72, 'withMETAndAsymJets': 3.03};
18 # data = TFile.Open("data2.9pb_fullSetOfVars.root");
19
20 # data = TFile.Open("Run_5000pb_PFElectron_PF2PATJets_PFMET.root");
21 ttbar = TFile.Open("TTJets_5000pb_PFElectron_PF2PATJets_PFMET.root");
22 # ttbar = TFile.Open("TT_Tune_5000pb_PFElectron_PF2PATJets_PFMET.root");
23 # wjets = TFile.Open("WJetsToLNu_5000pb_PFElectron_PF2PATJets_PFMET.root");
24 # wjets = TFile.Open("WToENu_5000pb_PFElectron_PF2PATJets_PFMET.root");
25 # zjets = TFile.Open("DYJetsToLL_5000pb_PFElectron_PF2PATJets_PFMET.root");
26 # bce1 = TFile.Open("QCD_Pt-20to30_BCtoE_5000pb_PFElectron_PF2PATJets_PFMET.root");
27 # bce2 = TFile.Open("QCD_Pt-30to80_BCtoE_5000pb_PFElectron_PF2PATJets_PFMET.root");
28 # bce3 = TFile.Open("QCD_Pt-80to170_BCtoE_5000pb_PFElectron_PF2PATJets_PFMET.root");
29 # enri1 = TFile.Open("QCD_Pt-20to30_EMEnriched_35.9pb_PFElectron_PF2PATJets_PFMET.root");
30 # enri2 = TFile.Open("QCD_Pt-30to80_EMEnriched_35.9pb_PFElectron_PF2PATJets_PFMET.root");
31 # enri3 = TFile.Open("QCD_Pt-80to170_EMEnriched_35.9pb_PFElectron_PF2PATJets_PFMET.root");
32 # zjets = TFile.Open("DYJets_35.9pb_PFElectron_PF2PATJets_PFMET.root");
33 # Zprime500 = TFile.Open("Zprime_M500GeV_W50GeV_5000pb_PFElectron_PF2PATJets_PFMET.root");
34 # Zprime1500 = TFile.Open("Zprime_M1500GeV_W15GeV_5000pb_PFElectron_PF2PATJets_PFMET.root");
35 # Zprime750 = TFile.Open("Zprime_M750GeV_W7500MeV_35.9pb_PFElectron_PF2PATJets_PFMET.root");
36 # Zprime1000 = TFile.Open("Zprime_M1000GeV_W10GeV_35.9pb_PFElectron_PF2PATJets_PFMET.root");
37 # Zprime2000 = TFile.Open("Zprime_M2000GeV_W20GeV_35.9pb_PFElectron_PF2PATJets_PFMET.root");
38 # Zprime4000 = TFile.Open("Zprime_M4000GeV_W400GeV_5000pb_PFElectron_PF2PATJets_PFMET.root");
39 # Tprime300 = TFile.Open("TprimeToWb_M300_35.9pb_PFElectron_PF2PATJets_PFMET.root");
40 # Tprime350 = TFile.Open("TprimeToWb_M350_35.9pb_PFElectron_PF2PATJets_PFMET.root");
41 WprimeTToTTD_M1000 = TFile.Open("WprimeTToTTD_M1000_5000pb_PFElectron_PF2PATJets_PFMET.root");
42 WprimeTToTTD_M600 = TFile.Open("WprimeTToTTD_M600_5000pb_PFElectron_PF2PATJets_PFMET.root");
43 WprimeTToTTD_M800 = TFile.Open("WprimeTToTTD_M800_5000pb_PFElectron_PF2PATJets_PFMET.root");
44 # WprimeToTTBbar_M1000 = TFile.Open("WprimeToTBbar_M-1000_5000pb_PFElectron_PF2PATJets_PFMET.root");
45
46 # pj1 = TFile.Open("pj1_36.145pb_PFElectron_PF2PATJets_PFMET.root");
47 # pj2 = TFile.Open("pj2_36.145pb_PFElectron_PF2PATJets_PFMET.root");
48 # pj3 = TFile.Open("pj3_36.145pb_PFElectron_PF2PATJets_PFMET.root");
49 # tW = TFile.Open("tW_36.145pb_PFElectron_PF2PATJets_PFMET.root");
50 # tchan = TFile.Open("tchan_36.145pb_PFElectron_PF2PATJets_PFMET.root");
51 # vqq = TFile.Open("vqq_7.22pb_V4PFCalo.root__fullSetOfVars.root");
52 # Zprime1250 = TFile.Open("/storage/workspace/BristolAnalysisTools/outputfiles/Zprime_M1250GeV_W12500MeV_36.135pb.root");
53 # Zprime1500 = TFile.Open("/storage/workspace/BristolAnalysisTools/outputfiles/Zprime_M1500GeV_W15GeV_36.135pb.root");
54
55 hists = [];
56 # hists.append('mttbar_QCDEnriched')
57 # hists.append('mttbar_conversions')
58 # hists.append('mttbar_conversions_withMETCut')
59 # hists.append('mttbar_conversions_withMETAndAsymJets')
60 # hists.append('mttbar_conversions_withAsymJetsCut')
61 # hists.append('mttbar_controlRegion')
62 # hists.append("jet12vsjet13");
63 # hists.append("jet12vsjet23");
64 # hists.append("jet13vsjet23");
65 # hists.append("mttbar");
66 # hists.append("tPrimeMass");
67 # hists.append("tPrimepT");
68 # hists.append("tPrimeHT");
69 # hists.append("tPrime_pt");
70 # hists.append("tPrime_px");
71 # hists.append("tPrime_py");
72 # hists.append("tPrime_pz");
73 # hists.append("mLeptonicTopLone");
74 hists.append("mass_vs_transMass");
75 hists.append("good_vs_badwp1topmass");
76 #
77 # hists.append("mttbar_withAsymJetsCut");
78 # hists.append("mttbar_2ndSolution_withAsymJetsCut");
79 # hists.append("mttbar_3rdSolution_withAsymJetsCut");
80 # hists.append("mttbar_allSolutions_withAsymJetsCut");
81 #
82 # hists.append("ttbar_pt_2ndSolution");
83 # hists.append("ttbar_pt_3rdSolution");
84 # hists.append("ttbar_pt_allSolutions");
85 #
86 # hists.append("ttbar_pt_withMETCut");
87 # hists.append("ttbar_pt_2ndSolution_withMETCut");
88 # hists.append("ttbar_pt_3rdSolution_withMETCut");
89 # hists.append("ttbar_pt_allSolutions_withMETCut");
90 #
91 # hists.append("ttbar_pt_withMETAndAsymJets");
92 # hists.append("ttbar_pt_2ndSolution_withMETAndAsymJets");
93 # hists.append("ttbar_pt_3rdSolution_withMETAndAsymJets");
94 # hists.append("ttbar_pt_allSolutions_withMETAndAsymJets");
95 #
96 # hists.append("ttbar_pt_withAsymJetsCut");
97 # hists.append("ttbar_pt_2ndSolution_withAsymJetsCut");
98 # hists.append("ttbar_pt_3rdSolution_withAsymJetsCut");
99 # # hists.append("ttbar_pt_allSolutions_withAsymJetsCut");
100 # hists.append("angleTops");
101 # hists.append("angleTops_withMETCut");
102 # hists.append("angleTops_withMETAndAsymJets");
103 # hists.append("angleTops_withAsymJetsCut");
104 #
105 # hists.append("pt_leadingTop");
106 # hists.append("pt_loneLepTop");
107 # hists.append("pt_lepTop");
108 # hists.append("pt_hadTop");
109 # hists.append("pt_loneHadTop");
110 # hists.append("pt_leadingTop_withMETCut");
111 # hists.append("pt_leadingTop_withMETAndAsymJets");
112 # hists.append("pt_leadingTop_withAsymJetsCut");
113 #
114 # hists.append("pt_NextToLeadingTop");
115 # hists.append("pt_NextToLeadingTop_withMETCut");
116 # hists.append("pt_NextToLeadingTop_withMETAndAsymJets");
117 # hists.append("pt_NextToLeadingTop_withAsymJetsCut");
118 #
119 # hists.append("mAllTop");
120 #
121 # hists.append("ttbar_px");
122 # hists.append("ttbar_py");
123 # hists.append("ttbar_pz");
124 #
125 # hists.append("m3");
126 # hists.append("HT");
127 # hists.append("qkjet_eta");
128 # hists.append("qkjet_rapid");
129 # hists.append("leadjet_rap");
130 # hists.append("lepb_angle");
131 # hists.append("angleHadTopD");
132 # hists.append("METtopangle_ltop");
133 # hists.append("HT3jet_ltop");
134 # hists.append("HT4jet_ltop");
135 # hists.append("mt2jbothchglep4j");
136 # hists.append("mt2jbothchgelec4j");
137 # hists.append("mt2jbothchgmu4j");
138 # hists.append("mt2jbothchglep5j");
139 # hists.append("mt2jbothchgmu5j");
140 # hists.append("mt2jbothchgelec5j");
141 # hists.append("mt2jpluselec4j");
142 # hists.append("mt2jplusmu4j");
143 # hists.append("mt2jpluslep4j");
144 # hists.append("mt2jpluslep5j");
145 # hists.append("mt2jpluselec5j");
146 # hists.append("mt2jplusmu5j");
147 # hists.append("mt2jminuselec4j");
148 # hists.append("mt2jminusmu4j");
149 # hists.append("mt2jminuslep4j");
150 # hists.append("mt2jminuselec5j");
151 # hists.append("mt2jminusmu5j");
152 # hists.append("mt2jminuslep5j");
153 # hists.append("mt4jbothchglep4j");
154 # hists.append("mt4jbothchgelec4j");
155 # hists.append("mt4jbothchgmu4j");
156 # hists.append("mt4jbothchglep5j");
157 # hists.append("mt4jbothchgmu5j");
158 # hists.append("mt4jbothchgelec5j");
159 # hists.append("mt4jpluselec4j");
160 # hists.append("mt4jplusmu4j");
161 # hists.append("mt4jpluslep4j");
162 # hists.append("mt4jpluslep5j");
163 # hists.append("mt4jpluselec5j");
164 # hists.append("mt4jplusmu5j");
165 # hists.append("mt4jminuselec4j");
166 # hists.append("mt4jminusmu4j");
167 # hists.append("mt4jminuslep4j");
168 # hists.append("mt4jminuselec5j");
169 # hists.append("mt4jminusmu5j");
170 # hists.append("mt4jminuslep5j");
171 # hists.append("leadingJetMass");
172 # hists.append("mtW");
173 # hists.append("neutrino_pz");
174 # hists.append("lone_neutrino_pz");
175 suffixes = ["0orMoreBtag",
176 "1orMoreBtag",
177 "2orMoreBtags",
178 "3orMoreBtags",'4orMoreBtags' ]
179 hists = [hist + '_' + suffix for hist in hists for suffix in suffixes]
180
181 print hists
182
183 # jetBinned = ["allJets",
184 # "1orMoreJets",
185 # "2orMoreJets",
186 # "3orMoreJets" , "4orMoreJets"]
187 # jetBinnedhists = []
188 # jetBinnedhists.append("QCDest_CombRelIso")
189 # jetBinnedhists.append("QCDest_CombRelIso_1btag")
190 # jetBinnedhists.append("QCDest_CombRelIso_2btag")
191 # jetBinnedhists.append("QCDest_CombRelIso_controlRegion")
192 # jetBinnedhists.append("QCDest_CombRelIso_controlRegion_1btag")
193 # jetBinnedhists.append("QCDest_CombRelIso_controlRegion_2btag")
194 #
195 # jetBinnedhists.append("QCDest_PFIsolation")
196 # jetBinnedhists.append("QCDest_PFIsolation_WithMETCut")
197 # jetBinnedhists.append("QCDest_PFIsolation_WithMETCutAndAsymJetCuts")
198 # jetBinnedhists.append("QCDest_PFIsolation_WithAsymJetCuts")
199
200 # jetBinnedhists.append("QCDest_PFIsolation_1btag")
201 # jetBinnedhists.append("QCDest_PFIsolation_2btag")
202 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion")
203 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion_1btag")
204 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion_2btag")
205 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2")
206 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2_WithMETCut")
207 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2_WithMETCutAndAsymJetCuts")
208 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2_WithAsymJetCuts")
209 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2_1btag")
210 # jetBinnedhists.append("QCDest_PFIsolation_controlRegion2_2btag")
211
212 # jetBinnedhists = [hist + '_' + suffix for hist in jetBinnedhists for suffix in jetBinned]
213 # hists.extend(jetBinnedhists)
214 gcd = gROOT.cd
215
216 for histname in hists:
217 currentSelection = 'default'
218 if 'withMETAndAsymJets' in histname:
219 currentSelection = 'withMETAndAsymJets'
220 gcd()
221 print histname
222 # hist_data = data.Get(histname);
223
224 # hist_data2;
225 # if (histname == "mttbar_rebinned")
226 # hist_data2 = data2.Get(histname);
227 # else
228 # hist_data2 = TH1F(*hist_data);
229 # hist_data.Sumw2();
230 # hist_data2.Sumw2();
231 hist_ttbar = ttbar.Get(histname);
232 # hist_wjets = wjets.Get(histname);
233 # hist_zjets = zjets.Get(histname);
234
235 # hist_bce1 = bce1.Get(histname);
236 # hist_bce2 = bce2.Get(histname);
237 # hist_bce3 = bce3.Get(histname);
238 # hist_enri1 = enri1.Get(histname);
239 # hist_enri2 = enri2.Get(histname);
240 # hist_enri3 = enri3.Get(histname);
241 # # hist_pj1 = pj1.Get(histname);
242 # # hist_pj2 = pj2.Get(histname);
243 # hist_pj3 = pj3.Get(histname);
244 # hist_singleTop = tW.Get(histname)
245 # hist_singleTop.Add(tchan.Get(histname))
246
247 # hist_Zprime500 = Zprime500.Get(histname);
248 # hist_Zprime750 = Zprime750.Get(histname);
249 # hist_Zprime1000 = Zprime1000.Get(histname);
250 # hist_Zprime1500 = Zprime1500.Get(histname);
251 # hist_Zprime2000 = Zprime2000.Get(histname);
252 # hist_Zprime4000 = Zprime4000.Get(histname);
253 # hist_Tprime300 = Tprime300.Get(histname);
254 # hist_Tprime350 = Tprime350.Get(histname);
255 # # hist_Zprime1250 = Zprime1250.Get(histname);
256 hist_wpm1000 = WprimeTToTTD_M1000.Get(histname);
257 hist_wpm600 = WprimeTToTTD_M600.Get(histname);
258 hist_wpm800 = WprimeTToTTD_M800.Get(histname);
259 # hist_wptb1000 = WprimeToTTBbar_M1000.Get(histname);
260
261
262 # hist_qcd = hist_bce1.Clone("qcd")#TH1F(*hist_bce1);
263 # hist_qcd.Add(hist_bce2);
264 # hist_qcd.Add(hist_bce3);
265 # hist_qcd.Add(hist_enri1);
266 # hist_qcd.Add(hist_enri2);
267 # hist_qcd.Add(hist_enri3);
268 # hist_qcd.Add(hist_pj1);
269 # hist_qcd.Add(hist_pj2);
270 # hist_qcd.Add(hist_pj3);
271 # hist_qcd.Scale(qcdScale[currentSelection]);
272 # ndata = hist_data.Integral();
273 # ntop = hist_ttbar.Integral();
274 # nwj = hist_wjets.Integral();
275 # nzj = hist_zjets.Integral();
276 # nqcd = hist_qcd.Integral();
277 # sumMC = ntop + nwj + nzj + nqcd;
278 # cout << ndata << " " << sumMC << endl;
279 # hist_wjets.Scale(ndata / sumMC);
280 # hist_ttbar.Scale(ndata / sumMC);
281 # hist_zjets.Scale(ndata / sumMC);
282 # hist_qcd.Scale(ndata / sumMC);
283 # mttbars = ['mttbar_' + suffix for suffix in suffixes]
284 # mttbars2 = ['mttbar_withMETAndAsymJets_' + suffix for suffix in suffixes]
285 # if histname in mttbars or histname in mttbars2:
286 # print "taking QCD shape from DATA"
287 # name = histname.replace('mttbar', 'mttbar_conversions')
288 # hist_qcd = data.Get(name)
289 # if( hist_qcd.Integral() > 0):
290 # hist_qcd.Scale(nqcd/hist_qcd.Integral())
291 # hist_mc = hist_qcd.Clone("all_mc")
292 # hist_mc.Add(hist_ttbar);
293 # hist_mc.Add(hist_zjets);
294 # hist_mc.Add(hist_wjets);
295 # hist_mc.Add(hist_singleTop);
296
297 # hist_data = hist_ttbar.Clone("test");
298 hist_data = hist_wpm600.Clone("test");
299 # hist_data = hist_wpm800.Clone("test");
300 # hist_data = hist_wpm1000.Clone("test");
301 # hist_data = hist_ttbar.Clone("test");
302 rebin = 1;
303 Urange = (0,5000)
304 if ("mass_vs_transMass" in histname):
305 hist_data.SetXTitle("mass(lepton+1bjet)/GeV");
306 hist_data.SetYTitle("transMass(lepton+MET+1bjet)/GeV");
307 rebin = 4;
308 Urange = (0, 2000)
309 elif ("good_vs_badwp1topmass" in histname):
310 hist_data.SetXTitle("W' mass good reco/GeV");
311 hist_data.SetYTitle("W' mass bad reco/GeV");
312 rebin = 4;
313 Urange = (0, 2000)
314 elif ("tPrimeMass" in histname):
315 hist_data.SetXTitle("T' mass/GeV");
316 hist_data.SetYTitle("Events/(100 GeV)");
317 rebin = 200;
318 Urange = (0, 2000)
319 elif ("wpmass" in histname or "wpnegmass" in histname or "wpanglmass" in histname):
320 hist_data.SetXTitle("W' mass/GeV");
321 hist_data.SetYTitle("Events/(60 GeV)");
322 rebin = 60;
323 Urange = (0, 2000)
324 elif ("jet12" in histname or "jet13" in histname):
325 hist_data.SetXTitle("Jet mass/GeV");
326 hist_data.SetYTitle("Jet mass/GeV)");
327 elif ("tPrimepT" in histname):
328 hist_data.SetXTitle("T' pT/GeV");
329 hist_data.SetYTitle("Events/(8 GeV)");
330 rebin = 8;
331 Urange = (0, 200)
332 elif ("tPrimeHT" in histname):
333 hist_data.SetXTitle("T' HT");
334 hist_data.SetYTitle("Events");
335 rebin = 4;
336 Urange = (0, 1.5)
337 elif ("m3" in histname):
338 hist_data.SetXTitle("M3/GeV");
339 hist_data.SetYTitle("Events/(50 GeV)");
340 rebin = 50;
341 Urange = (0, 1500)
342 elif (histname == "electron_et"):
343 hist_data.SetXTitle("electron E_{T}/GeV");
344 hist_data.SetYTitle("Events/(10 GeV)");
345 rebin = 10;
346 Urange = (0, 300)
347 elif (histname == "electron_pt" or histname == "electminus_pt" or histname == "positron_pt"):
348 hist_data.SetXTitle("electron p_{T}/GeV");
349 hist_data.SetYTitle("Events/(10 GeV)");
350 rebin = 10;
351 Urange = (0, 300)
352 elif (histname == "muon_et"):
353 hist_data.SetXTitle("muon E_{T}/GeV");
354 hist_data.SetYTitle("Events/(10 GeV)");
355 rebin = 10;
356 Urange = (0, 300)
357 elif (histname == "muon_pt"):
358 hist_data.SetXTitle("muon p_{T}/GeV");
359 hist_data.SetYTitle("Events/(10 GeV)");
360 rebin = 10;
361 Urange = (0, 300)
362 elif ("ttbar_pt" in histname):
363 hist_data.SetXTitle("p_{T} of t#bar{t} system/GeV");
364 hist_data.SetYTitle("Events/(10 GeV)");
365 rebin = 10;
366 Urange = (0, 500)
367 elif ("ttbar_px" in histname):
368 hist_data.SetXTitle("p_{x} of t#bar{t} system/GeV");
369 hist_data.SetYTitle("Events/(10 GeV)");
370 rebin = 10;
371 Urange = (0, 500)
372 elif ("ttbar_py" in histname):
373 hist_data.SetXTitle("p_{y} of t#bar{t} system/GeV");
374 hist_data.SetYTitle("Events/(10 GeV)");
375 rebin = 10;
376 Urange = (0, 500)
377 elif ("ttbar_pz" in histname):
378 hist_data.SetXTitle("p_{z} of t#bar{t} system/GeV");
379 hist_data.SetYTitle("Events/(50 GeV)");
380 rebin = 50;
381 Urange = (0, 2000)
382 elif ("METpt_ltop" in histname):
383 hist_data.SetXTitle("MET p_{T}/GeV");
384 hist_data.SetYTitle("Events/(10 GeV)");
385 rebin = 10;
386 Urange = (0, 400)
387 elif ("tPrime_pt" in histname):
388 hist_data.SetXTitle("p_{T} of T' system/GeV");
389 hist_data.SetYTitle("Events/(20 GeV)");
390 rebin = 20;
391 Urange = (0, 200)
392 elif ("tPrime_px" in histname):
393 hist_data.SetXTitle("p_{x} of T' system/GeV");
394 hist_data.SetYTitle("Events/(20 GeV)");
395 rebin = 20;
396 Urange = (0, 200)
397 elif ("tPrime_py" in histname):
398 hist_data.SetXTitle("p_{y} of T' system/GeV");
399 hist_data.SetYTitle("Events/(20 GeV)");
400 rebin = 20;
401 Urange = (0, 200)
402 elif ("tPrime_pz" in histname):
403 hist_data.SetXTitle("p_{z} of T' system/GeV");
404 hist_data.SetYTitle("Events/(100 GeV)");
405 rebin = 200;
406 Urange = (0, 1800)
407 elif ("HT_" in histname):
408 hist_data.SetXTitle("#Sigma p_{T}/GeV");
409 hist_data.SetYTitle("Events/(20 GeV)");
410 rebin = 20;
411 Urange = (0, 2000)
412 elif ("ST" in histname):
413 hist_data.SetXTitle("ST/GeV");
414 hist_data.SetYTitle("Events/(30 GeV)");
415 rebin = 30;
416 Urange = (0, 1000)
417 elif ("HT3jet_ltop" in histname):
418 hist_data.SetXTitle("#Sigma p_{T} of leading 3 jets/GeV");
419 hist_data.SetYTitle("Events/(20 GeV)");
420 rebin = 20;
421 Urange = (0, 1000)
422 elif ("HT4jet_ltop" in histname):
423 hist_data.SetXTitle("#Sigma p_{T} of leading 4 jets/GeV");
424 hist_data.SetYTitle("Events/(50 GeV)");
425 rebin = 50;
426 Urange = (0, 1200)
427 elif (histname == "numberOfJets"):
428 hist_data.SetXTitle("number of jets");
429 hist_data.SetYTitle("Events");
430 elif (histname == "numberOfBJets"):
431 hist_data.SetXTitle("number of b-tagged jets (SSVHE medium)");
432 hist_data.SetYTitle("Events");
433 elif ('MET_' in histname and 'MET_ltop' not in histname):
434 hist_data.SetXTitle("MET/GeV");
435 hist_data.SetYTitle("Events/(10 GeV)");
436 rebin = 2;
437 Urange = (0, 400)
438 elif ('MET_ltop' in histname):
439 hist_data.SetXTitle("MET/GeV");
440 hist_data.SetYTitle("Events/(10 GeV)");
441 rebin = 20;
442 Urange = (0, 400)
443 elif ("leadingJetMass" in histname):
444 hist_data.SetXTitle("leading jet mass/GeV");
445 hist_data.SetYTitle("Events/(5 GeV)");
446 rebin = 5;
447 Urange = (0, 150)
448 elif ("mtW" in histname):
449 hist_data.SetXTitle("transverse W-boson mass/GeV");
450 hist_data.SetYTitle("Events/(10 GeV)");
451 rebin = 10;
452 elif ("both" in histname or "plus" in histname or "minus" in histname):
453 hist_data.SetXTitle("transverse mass/GeV");
454 hist_data.SetYTitle("Events/(100 GeV)");
455 rebin = 100;
456 Urange = (0, 2000)
457 elif ("transMasslm1b" in histname):
458 hist_data.SetXTitle("M_{T} (lep+MET+1b)/GeV");
459 hist_data.SetYTitle("Events/(50 GeV)");
460 rebin = 50;
461 Urange = (0, 700)
462 elif ("electronD0" in histname):
463 hist_data.SetXTitle("electron d_{0} / cm");
464 hist_data.SetYTitle("Events/(0.001 cm)");
465 rebin = 10;
466 elif ("angleTops" in histname or "deltaPhiTops" in histname):
467 hist_data.SetXTitle("angle between top quarks");
468 hist_data.SetYTitle("Events/(0.1 rad)");
469 rebin = 10;
470 elif ("lepb_angle" in histname):
471 hist_data.SetXTitle("angle between electron and b jet");
472 hist_data.SetYTitle("Events/(0.1 rad)");
473 rebin = 10;
474 elif ("angleHadTopD" in histname):
475 hist_data.SetXTitle("angle between hadronic top and light jet");
476 hist_data.SetYTitle("Events/(0.2 rad)");
477 rebin = 20;
478 elif ("METtopangle_ltop" in histname):
479 hist_data.SetXTitle("angle between MET and top p_{T}");
480 hist_data.SetYTitle("Events/(0.1 rad)");
481 rebin = 10;
482 Urange = (-2, 2)
483 elif ("qkjet_eta" in histname):
484 hist_data.SetXTitle("#eta of b jet");
485 hist_data.SetYTitle("Events/(0.1 rad)");
486 Urange = (-3, 3)
487 rebin = 10;
488 elif ("_rap" in histname):
489 hist_data.SetXTitle("Jet Rapidity");
490 hist_data.SetYTitle("Events/(0.1 rad)");
491 Urange = (-3, 3)
492 rebin = 20;
493 elif ("neutrino_pz" in histname):
494 hist_data.SetXTitle("neutrino p_{Z} /GeV");
495 hist_data.SetYTitle("Events/(20 GeV)");
496 rebin = 20;
497 Urange = (-500, 500)
498 elif ('mHadTopLone' in histname or 'mHadTopLoneNM' in histname):
499 hist_data.SetXTitle("top mass /GeV");
500 hist_data.SetYTitle("Events/(10 GeV)");
501 rebin = 10;
502 Urange = (0, 400)
503 elif ('mass4jets' in histname):
504 hist_data.SetXTitle("4-jet mass /GeV");
505 hist_data.SetYTitle("Events/(50 GeV)");
506 rebin = 50;
507 Urange = (0, 1500)
508 elif ('mLeptonicTopLone' in histname or 'mLepTopLoneNM' in histname or 'mLepTopLone' in histname):
509 hist_data.SetXTitle("top mass /GeV");
510 hist_data.SetYTitle("Events/(10 GeV)");
511 rebin = 10;
512 Urange = (0, 400)
513 elif ('chiHadronicTop' in histname or 'chiLeptonicTop' in histname):
514 hist_data.SetXTitle("top #chi^{2} /GeV");
515 hist_data.SetYTitle("Events/(1)");
516 rebin = 1;
517 Urange = (0, 30)
518 elif ('chiGlobal' in histname or 'chiTotal' in histname):
519 hist_data.SetXTitle("Event #chi^{2} /GeV");
520 hist_data.SetYTitle("Events/(100)");
521 rebin = 100;
522 elif ('numHadTopMCMatches' in histname or 'numLepTopMCMatches' in histname):
523 hist_data.SetXTitle("Number of MC-Truth Matches");
524 hist_data.SetYTitle("Events");
525 elif ('numHadTopCorrectID' in histname or 'numLepTopCorrectID' in histname):
526 hist_data.SetXTitle("Number of Reco Candidates Matched to MC-Truth Particles");
527 hist_data.SetYTitle("Events");
528 elif ('lepTopDeltaR' in histname or 'hadTopDeltaR' in histname):
529 hist_data.SetXTitle("#Delta R of MC truth top");
530 hist_data.SetYTitle("Events");
531 rebin = 2;
532 elif ('lepTopLep' in histname or 'hadTopHad' in histname):
533 hist_data.SetXTitle("top MC truth identity");
534 hist_data.SetYTitle("Events");
535 Urange = (0, 2)
536 elif ('mHadronicTop' in histname or 'mAllTop' in histname):
537 hist_data.SetXTitle("top mass /GeV");
538 hist_data.SetYTitle("Events/(40 GeV)");
539 rebin = 40;
540 Urange = (0, 1000)
541 elif ('mLeptonicTop' in histname):
542 hist_data.SetXTitle("top mass /GeV");
543 hist_data.SetYTitle("Events/(25 GeV)");
544 rebin = 25;
545 Urange = (0, 600)
546 elif ('pt_' in histname and 'Top' in histname):
547 hist_data.SetXTitle("top p_{T} /GeV");
548 hist_data.SetYTitle("Events/(50 GeV)");
549 rebin = 50;
550 Urange = (0, 500)
551 elif ('leadingJetPt' in histname):
552 hist_data.SetXTitle("leading jet p_{T} /GeV");
553 hist_data.SetYTitle("Events/(50 GeV)");
554 rebin = 50;
555 Urange = (0, 500)
556 elif('QCDest_CombRelIso' in histname):
557 hist_data.SetXTitle("relative isolation");
558 hist_data.SetYTitle("Events/(0.1)");
559 rebin = 10;
560 Urange = (0, 2)
561 elif('QCDest_PFIsolation' in histname):
562 hist_data.SetXTitle("ParticleFlow isolation");
563 hist_data.SetYTitle("Events/(0.1)");
564 rebin = 10
565 Urange = (0, 2)
566
567
568 hist_data.SetTitleOffset(1.3, "Y");
569 hist_data.Rebin2D(rebin, rebin);
570 hist_ttbar.Rebin2D(rebin, rebin);
571 hist_wpm1000.Rebin2D(rebin, rebin);
572 hist_wpm600.Rebin2D(rebin, rebin);
573 hist_wpm800.Rebin2D(rebin, rebin);
574 if ('jet1' in histname):
575 hist_data.Rebin2D();
576 # hist_ttbar.Rebin2D();
577 hist_Tprime300.Rebin2D();
578 hist_Tprime350.Rebin2D();
579 hist_data.SetAxisRange(0, 600, "X");
580 hist_data.SetAxisRange(0, 600, "Y");
581 # hist_ttbar.SetAxisRange(0, 600, "X");
582 # hist_ttbar.SetAxisRange(0, 600, "Y");
583 # hist_Tprime300.SetAxisRange(0, 600, "X");
584 # hist_Tprime300.SetAxisRange(0, 600, "Y");
585 # hist_Tprime350.SetAxisRange(0, 600, "X");
586 # hist_Tprime350.SetAxisRange(0, 600, "Y");
587
588 # hist_data.SetMarkerStyle(8);
589 # hist_data.SetMarkerColor(kRed);
590 # hist_data.SetMarkerSize(1.5);
591 # hist_data.SetMarkerSize(1);
592
593 # hist_data.SetFillStyle(1001);
594 # hist_data.SetFillColor(kRed);
595 hist_ttbar.SetMarkerColor(kRed);
596 hist_ttbar.SetMarkerStyle(2);
597 hist_ttbar.SetMarkerSize(2);
598 # hist_wjets.SetFillStyle(1001);
599 # hist_wjets.SetFillColor(4);
600 # hist_zjets.SetFillStyle(1001);
601 # hist_zjets.SetFillColor(8);
602 # hist_qcd.SetFillStyle(1001);
603 # hist_qcd.SetFillColor(kYellow);
604 # hist_qcd.SetFillColor(12);
605 # hist_singleTop.SetFillStyle(1001);
606 # hist_singleTop.SetFillColor(kMagenta)
607 # nbins = hist_qcd.GetXaxis().GetNbins();
608 # binwidth = (hist_qcd.GetXaxis().GetXmax() - hist_qcd.GetXaxis().GetXmin()) / nbins;
609 # for i in range(1, nbins + 1):
610 # yvalue = hist_qcd.GetBinContent(i);
611 # # float xvalue = hist_qcd.GetBinCenter(i);
612 # # float ymin = yvalue - yvalue*0.5;
613 # # float ymax = yvalue + yvalue*0.5;
614 # # float xmin = xvalue - 0.5*binwidth;
615 # # float xmax = xvalue + 0.5*binwidth;
616 # error = yvalue * 0.5;
617 # hist_mc.SetBinError(i, error);
618 # # qcdUncert.SetPointError(i, xmin, xmax, ymin, ymax);
619 #
620 # qcdUncert = TGraphAsymmErrors(hist_mc);
621
622 linewidth = 6;
623 # hist_Zprime500.SetLineColor(6);
624 # hist_Zprime500.SetLineWidth(linewidth);
625 # hist_Zprime500.SetFillStyle(0);
626 # hist_Zprime500.SetFillColor(kWhite);
627
628 # hist_Zprime750.SetLineColor(5);
629 # hist_Zprime750.SetLineWidth(linewidth);
630 # hist_Zprime750.SetFillStyle(0);
631 # hist_Zprime750.SetFillColor(kWhite);
632
633 # hist_Zprime1000.SetLineColor(7);
634 # hist_Zprime1000.SetLineWidth(linewidth);
635 # hist_Zprime1000.SetFillStyle(0);
636 # hist_Zprime1000.SetFillColor(kWhite);
637 # hist_Zprime2000.SetLineColor(42);
638 # hist_Zprime2000.SetLineWidth(linewidth);
639 # hist_Zprime2000.SetFillStyle(0);
640 # hist_Zprime2000.SetFillColor(kWhite);
641 # # hist_Zprime4000.SetLineColor(50);
642 # hist_Zprime4000.SetLineWidth(linewidth);
643 # hist_Zprime4000.SetFillStyle(0);
644 # hist_Zprime4000.SetFillColor(kWhite);
645
646 # hist_Tprime300.SetLineColor(kOrange + 1);
647 # hist_Tprime300.SetLineWidth(linewidth);
648 # hist_Tprime350.SetLineColor(kGray + 3);
649 # hist_Tprime350.SetLineWidth(linewidth);
650 #
651 # hist_Zprime1250.SetLineColor(kCyan - 5);
652 # hist_Zprime1250.SetLineWidth(linewidth);
653 # hist_Zprime1250.SetFillStyle(0);
654 # hist_Zprime1250.SetFillColor(kWhite);
655 #
656 # hist_Zprime1500.SetLineColor(42);
657 # hist_Zprime1500.SetLineWidth(linewidth);
658 # hist_Zprime1500.SetFillStyle(0);
659 # hist_Zprime1500.SetFillColor(kWhite);
660
661 hist_wpm1000.SetMarkerColor(kOrange + 1);
662 hist_wpm600.SetMarkerColor(kGray + 3);
663 hist_wpm800.SetMarkerColor(kBlack);
664 hist_wpm1000.SetMarkerStyle(2);
665 hist_wpm600.SetMarkerStyle(2);
666 hist_wpm800.SetMarkerStyle(1);
667 hist_wpm600.SetMarkerSize(2);
668 hist_wpm800.SetMarkerSize(1);
669 hist_wpm1000.SetMarkerSize(2);
670 # hist_wptb1000.SetLineColor(kCyan);
671 # hist_wptb1000.SetLineWidth(linewidth);
672
673 # qcdUncert.SetFillColor(kGray + 3);
674 # qcdUncert.SetFillStyle(3003);
675
676 leg = TLegend(0.696, 0.15, 0.95, 0.72);
677 leg.SetBorderSize(1);
678 leg.SetLineStyle(0);
679 leg.SetTextFont(42);
680 leg.SetFillStyle(0);
681
682 # leg.AddEntry(hist_data, "data", "P");
683 # leg.AddEntry(hist_data2, "data(no HLT)", "P");
684 # leg.AddEntry(hist_ttbar, "t#bar{t}", "P");
685 # leg.AddEntry(hist_wjets, "W#rightarrowl#nu", "f");
686 # leg.AddEntry(hist_zjets, "Z/#gamma*#rightarrowl^{+}l^{-}", "f");
687 # leg.AddEntry(hist_qcd, "QCD", "F");
688 # leg.AddEntry(hist_qcd, "QCD/#gamma + jets");
689 # leg.AddEntry(hist_singleTop, "Single-Top")
690 # leg.AddEntry(hist_Zprime500, "Z' 0.5TeV (50 pb)", "L");
691 # leg.AddEntry(hist_Zprime750, "Z' 0.75TeV", "L");
692 # leg.AddEntry(hist_Zprime1000, "Z' 1TeV", "L");
693 # leg.AddEntry(hist_Zprime1500, "Z' 1.5TeV (50 pb)", "L");
694 # leg.AddEntry(hist_Zprime2000, "Z' 2TeV", "L");
695 # leg.AddEntry(hist_Zprime4000, "Z' 4TeV (50 pb)", "L");
696 # leg.AddEntry(hist_Tprime300, "T' 300GeV", "L");
697 # leg.AddEntry(hist_Tprime350, "T' 350GeV", "L");
698 # leg.AddEntry(hist_Zprime1250, "Z' 1.25TeV");
699 leg.AddEntry(hist_wpm600, "W't .6TeV (8 pb)", "P");
700 leg.AddEntry(hist_wpm800, "W't .8TeV (2.2 pb)", "P");
701 leg.AddEntry(hist_wpm1000, "W't 1TeV (0.72 pb)", "P");
702 # leg.AddEntry(hist_wptb1000, "W'-> tb 1TeV (8 pb)", "L");
703
704
705 # Need to loop through samples to be plotted *****
706
707 canvases.append(TCanvas("cname" + histname, histname, 1200, 900))
708 canvases[-1].cd().SetRightMargin(0.1);
709 if ('jet1' in histname):
710 hist_data.SetMarkerStyle(8);
711 # hist_ttbar.SetMarkerStyle(21);
712 # hist_ttbar.SetMarkerColor(kRed);
713 hist_Tprime300.SetMarkerColor(kOrange + 1);
714 hist_Tprime300.SetMarkerStyle(22);
715 hist_Tprime350.SetMarkerColor(kGray + 3);
716 hist_Tprime350.SetMarkerStyle(3);
717
718 # hist_data.SetStats(1);
719 # hist_data.Draw('error');
720 # hist_data.Draw("box");
721 hist_data.Draw("axis");
722 # NOTE: "scat" doesn't work with the histograms from W'600.
723 # This script slows way down and the plots are missing most points.
724 # "box" produces the plots OK. Only W'600 shows this problem.
725 # Its 2D histograms are inherently messed up.
726
727 # hist_data.SetMarkerStyle(8);
728 # hist_Zprime500.Draw("same");
729 # hist_Zprime750.Draw("same");
730 # hist_Zprime1000.Draw("same");
731 # hist_Zprime2000.Draw("same");
732 # hist_Zprime4000.Draw("same");
733 # hist_Tprime300.Draw("same");
734 # hist_Tprime350.Draw("same");
735 # hist_Zprime1250.Draw("same");
736 # hist_Zprime1500.Draw("same");
737 # hist_wpm600.Draw("colz same");
738 # hist_wpm800.Draw("same");
739 # hist_wpm1000.Draw("same");
740 hist_ttbar.Draw("colz same");
741 # hist_wptb1000.Draw("same");
742 # qcdUncert.Draw("1 same");
743 # hist_data2.Draw("error same");
744 # hist_data.Draw("error same");
745 # hist_data.Draw("same");
746 # leg.Draw();
747
748 text1 = TLatex(3.570061, 23.08044, "CMS Preliminary");
749 text1.SetNDC();
750 text1.SetTextAlign(13);
751 text1.SetX(0.38);
752 text1.SetY(0.928);
753 #text1.SetLineWidth(2);
754 text1.SetTextFont(42);
755 text1.SetTextSizePixels(24);# dflt=28
756 text1.SetTextSize(0.03);
757 text1.Draw();
758
759 text2 = TLatex(3.570061, 23.08044, "%d pb^{-1} at #sqrt{s} = 7 TeV" % lumi);
760 text2.SetNDC();
761 text2.SetTextAlign(13);
762 text2.SetX(0.38);
763 text2.SetY(0.88);
764 #text2.SetLineWidth(2);
765 text2.SetTextFont(42);
766 text2.SetTextSizePixels(24);# dflt=28
767 text2.SetTextSize(0.03);
768 text2.Draw();
769 canvases[-1].SaveAs('plots/' + histname + '.png')
770 # canvases[-1].SaveAs('plots/' + histname + '.root')
771 # canvases[-1].SaveAs('/storage/results/' + histname + '.png')
772
773 # cu_hist_data = getCumulativePlot(hist_data, "data");
774 # cu_hist_ttbar = getCumulativePlot(hist_ttbar, "ttbar");
775 # cu_hist_wjets = getCumulativePlot(hist_wjets, "wjets");
776 # cu_hist_zjets = getCumulativePlot(hist_zjets, "zjets");
777 # cu_hist_qcd = getCumulativePlot(hist_qcd, "qcd");
778 # cu_hist_singleTop = getCumulativePlot(hist_singleTop, "singleTop");
779 # cu_hist_wpm1000 = getCumulativePlot(hist_wpm1000, "Wprimet1000");
780 # cu_hist_wpm600 = getCumulativePlot(hist_wpm600, "Wprimet600");
781 # cu_hist_wpm800 = getCumulativePlot(hist_wpm800, "Wprimet800");
782 # cu_hist_wptb1000 = getCumulativePlot(hist_wptb1000, "Wprimetb1000");
783 # cu_hist_Zprime500 = getCumulativePlot(hist_Zprime500, "Zprime500");
784 # cu_hist_Zprime750 = getCumulativePlot(hist_Zprime750, "Zprime750");
785 # cu_hist_Zprime1000 = getCumulativePlot(hist_Zprime1000, "Zprime1000");
786 # cu_hist_Zprime2000 = getCumulativePlot(hist_Zprime2000, "Zprime2000");
787 # cu_hist_Zprime4000 = getCumulativePlot(hist_Zprime4000, "Zprime4000");
788 # cu_hist_Tprime300 = getCumulativePlot(hist_Tprime300, "Tprime300");
789 # cu_hist_Tprime350 = getCumulativePlot(hist_Tprime350, "Tprime350");
790 ## cu_hist_Zprime1250 = getCumulativePlot(hist_Zprime1250, "Zprime1250");
791 ## cu_hist_Zprime1500 = getCumulativePlot(hist_Zprime1500, "Zprime1500");
792 # cu_hist_data.SetYTitle("Integrated Events/(50 GeV)");
793 ##
794 #
795 # cu_hist_data.SetAxisRange(Urange[0], Urange[1]);
796 # cu_hist_ttbar.SetAxisRange(Urange[0], Urange[1]);
797 # cu_hist_wjets.SetAxisRange(Urange[0], Urange[1]);
798 # cu_hist_zjets.SetAxisRange(Urange[0], Urange[1]);
799 # cu_hist_qcd.SetAxisRange(Urange[0], Urange[1]);
800 # cu_hist_singleTop.SetAxisRange(Urange[0], Urange[1]);
801 # cu_hist_wpm1000.SetAxisRange(Urange[0], Urange[1]);
802 # cu_hist_wpm600.SetAxisRange(Urange[0], Urange[1]);
803 # cu_hist_wpm800.SetAxisRange(Urange[0], Urange[1]);
804 # cu_hist_wptb1000.SetAxisRange(Urange[0], Urange[1]);
805
806 # cu_hs = THStack("cu_MC", "cu_MC");
807 # cu_hs.Add(cu_hist_qcd);
808 # cu_hs.Add(cu_hist_zjets);
809 # cu_hs.Add(cu_hist_wjets);
810 # cu_hs.Add(cu_hist_ttbar);
811
812 # scanvases.append(TCanvas("cu_cname" + histname, histname + "(cu)", 1200, 900))
813 # scanvases[-1].cd().SetRightMargin(0.04);
814 # cu_hist_data.Draw("error");
815 # cu_hs.Draw("hist same");
816 # cu_hist_wpm1000.Draw("same");
817 # cu_hist_wpm600.Draw("same");
818 # cu_hist_wpm800.Draw("same");
819 # cu_hist_wptb1000.Draw("same");
820 # cu_hist_Zprime500.Draw("same");
821 # cu_hist_Zprime750.Draw("same");
822 # cu_hist_Zprime1000.Draw("same");
823 # cu_hist_Zprime2000.Draw("same");
824 # cu_hist_Zprime4000.Draw("same");
825 # cu_hist_Tprime300.Draw("same");
826 # cu_hist_Tprime350.Draw("same");
827 ### cu_hist_Zprime1250.Draw("same");
828 ### cu_hist_Zprime1500.Draw("same");
829 ## # cu_hist_data2.Draw("error same");
830 # cu_hist_data.Draw("error same");
831 # leg.Draw();
832 ##
833 # text1.Draw();
834 ##
835 # text2.Draw();
836 # scanvases[-1].SaveAs('/storage/results/' + histname + '_integrated.png')
837 # scanvases[-1].SaveAs('plots/' + histname + '_integrated.png')
838
839
840
841 # tdrGrid: Turns the grid lines on (true) or off (false)
842
843 #def tdrGrid(bool gridOn):
844 # tdrStyle.SetPadGridX(gridOn);
845 # tdrStyle.SetPadGridY(gridOn);
846 #
847
848 # fixOverlay: Redraws the axis
849
850 def plusminuscmp():
851 WprimeTToTTD_M600 = TFile.Open("WprimeTToTTD_M600_5000pb_PFElectron_PF2PATJets_PFMET.root");
852 hist_wpm600pl = WprimeTToTTD_M600.Get("wpmassplus_1orMoreBtag");
853 hist_wpm600mi = WprimeTToTTD_M600.Get("wpmassminus_1orMoreBtag");
854 rebin = 60;
855 Urange = (0, 2000)
856 hist_wpm600pl.SetXTitle("Reco W' mass/GeV");
857 hist_wpm600pl.SetYTitle("Events/(60 GeV)");
858 hist_wpm600pl.Rebin(rebin);
859 hist_wpm600pl.SetAxisRange(Urange[0], Urange[1]);
860 hist_wpm600mi.Rebin(rebin);
861 hist_wpm600mi.SetAxisRange(Urange[0], Urange[1]);
862 hist_wpm600pl.SetLineColor(kGray + 3);
863 hist_wpm600mi.SetLineColor(kCyan);
864 linewidth = 6;
865 hist_wpm600pl.SetLineWidth(linewidth);
866 hist_wpm600mi.SetLineWidth(linewidth);
867 leg = TLegend(0.696, 0.35, 0.95, 0.92);
868 leg.SetBorderSize(0);
869 leg.SetLineStyle(0);
870 leg.SetTextFont(42);
871 leg.SetFillStyle(0);
872 leg.AddEntry(hist_wpm600pl, "W't+ .6TeV (8 pb)", "L");
873 leg.AddEntry(hist_wpm600mi, "W't- .6TeV (8 pb)", "L");
874 hist_wpm600pl.SetStats(1);
875 hist_wpm600pl.Draw();
876 hist_wpm600mi.Draw("same");
877 leg.Draw();
878 canvases[-1].SaveAs('plots/' + 'wpmassplusminus' + '.png')
879
880
881 def fixOverlay():
882 gPad.RedrawAxis();
883
884
885 def getCumulativePlot(initial, type):
886 global counter
887 counter = counter + 1;
888 name = initial.GetName()
889 name = "cu_" + name + "_" + type + str(counter);
890 title = initial.GetTitle()
891 title = "cu_" + title + "_" + type;
892 xaxis = initial.GetXaxis().GetTitle();
893 yaxis = initial.GetYaxis().GetTitle();
894 nBins = initial.GetNbinsX();
895 cu = TH1F(name, title, nBins, initial.GetXaxis().GetXmin(), initial.GetXaxis().GetXmax());
896 for bin in range(1,nBins+1):
897 cu.SetBinContent(bin, initial.Integral(bin, nBins));
898
899 cu.SetFillStyle(initial.GetFillStyle());
900 cu.SetFillColor(initial.GetFillColor());
901 cu.SetLineColor(initial.GetLineColor());
902 cu.SetMarkerSize(initial.GetMarkerSize());
903 cu.SetMarkerStyle(initial.GetMarkerStyle());
904 cu.SetMarkerColor(initial.GetMarkerColor());
905 cu.SetLineWidth(initial.GetLineWidth());
906 cu.GetXaxis().SetTitle(xaxis);
907 cu.GetYaxis().SetTitle(yaxis);
908 return cu;
909
910 if __name__ == "__main__":
911 gROOT.SetBatch(True)
912 gROOT.ProcessLine('gErrorIgnoreLevel = 1001;')
913 plotMttbar()
914 # print "press enter to quit"
915 # a = raw_input()