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Reference Guide
rf310_sliceplot.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook
4/// 'MULTIDIMENSIONAL MODELS' RooFit tutorial macro #309
5///
6/// Projecting p.d.f and data slices in discrete observables
7///
8/// \macro_image
9/// \macro_output
10/// \macro_code
11/// \author 07/2008 - Wouter Verkerke
12
13#include "RooRealVar.h"
14#include "RooDataSet.h"
15#include "RooGaussModel.h"
16#include "RooDecay.h"
17#include "RooBMixDecay.h"
18#include "RooCategory.h"
19#include "TCanvas.h"
20#include "TAxis.h"
21#include "RooPlot.h"
22using namespace RooFit ;
23
24
25void rf310_sliceplot()
26{
27
28
29 // C r e a t e B d e c a y p d f w it h m i x i n g
30 // ----------------------------------------------------------
31
32 // Decay time observables
33 RooRealVar dt("dt","dt",-20,20) ;
34
35 // Discrete observables mixState (B0tag==B0reco?) and tagFlav (B0tag==B0(bar)?)
36 RooCategory mixState("mixState","B0/B0bar mixing state") ;
37 RooCategory tagFlav("tagFlav","Flavour of the tagged B0") ;
38
39 // Define state labels of discrete observables
40 mixState.defineType("mixed",-1) ;
41 mixState.defineType("unmixed",1) ;
42 tagFlav.defineType("B0",1) ;
43 tagFlav.defineType("B0bar",-1) ;
44
45 // Model parameters
46 RooRealVar dm("dm","delta m(B)",0.472,0.,1.0) ;
47 RooRealVar tau("tau","B0 decay time",1.547,1.0,2.0) ;
48 RooRealVar w("w","Flavor Mistag rate",0.03,0.0,1.0) ;
49 RooRealVar dw("dw","Flavor Mistag rate difference between B0 and B0bar",0.01) ;
50
51 // Build a gaussian resolution model
52 RooRealVar bias1("bias1","bias1",0) ;
53 RooRealVar sigma1("sigma1","sigma1",0.01) ;
54 RooGaussModel gm1("gm1","gauss model 1",dt,bias1,sigma1) ;
55
56 // Construct a decay pdf, smeared with single gaussian resolution model
57 RooBMixDecay bmix_gm1("bmix","decay",dt,mixState,tagFlav,tau,dm,w,dw,gm1,RooBMixDecay::DoubleSided) ;
58
59 // Generate BMixing data with above set of event errors
60 RooDataSet *data = bmix_gm1.generate(RooArgSet(dt,tagFlav,mixState),20000) ;
61
62
63
64 // P l o t f u l l d e c a y d i s t r i b u t i o n
65 // ----------------------------------------------------------
66
67 // Create frame, plot data and pdf projection (integrated over tagFlav and mixState)
68 RooPlot* frame = dt.frame(Title("Inclusive decay distribution")) ;
69 data->plotOn(frame) ;
70 bmix_gm1.plotOn(frame) ;
71
72
73
74 // P l o t d e c a y d i s t r . f o r m i x e d a n d u n m i x e d s l i c e o f m i x S t a t e
75 // ------------------------------------------------------------------------------------------------------------------
76
77 // Create frame, plot data (mixed only)
78 RooPlot* frame2 = dt.frame(Title("Decay distribution of mixed events")) ;
79 data->plotOn(frame2,Cut("mixState==mixState::mixed")) ;
80
81 // Position slice in mixState at "mixed" and plot slice of pdf in mixstate over data (integrated over tagFlav)
82 bmix_gm1.plotOn(frame2,Slice(mixState,"mixed")) ;
83
84 // Create frame, plot data (unmixed only)
85 RooPlot* frame3 = dt.frame(Title("Decay distribution of unmixed events")) ;
86 data->plotOn(frame3,Cut("mixState==mixState::unmixed")) ;
87
88 // Position slice in mixState at "unmixed" and plot slice of pdf in mixstate over data (integrated over tagFlav)
89 bmix_gm1.plotOn(frame3,Slice(mixState,"unmixed")) ;
90
91
92
93 TCanvas* c = new TCanvas("rf310_sliceplot","rf310_sliceplot",1200,400) ;
94 c->Divide(3) ;
95 c->cd(1) ; gPad->SetLeftMargin(0.15) ; frame->GetYaxis()->SetTitleOffset(1.4) ; gPad->SetLogy() ; frame->Draw() ;
96 c->cd(2) ; gPad->SetLeftMargin(0.15) ; frame2->GetYaxis()->SetTitleOffset(1.4) ; gPad->SetLogy() ; frame2->Draw() ;
97 c->cd(3) ; gPad->SetLeftMargin(0.15) ; frame3->GetYaxis()->SetTitleOffset(1.4) ; gPad->SetLogy() ; frame3->Draw() ;
98
99
100}
#define c(i)
Definition: RSha256.hxx:101
#define gPad
Definition: TVirtualPad.h:286
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Definition: RooArgSet.h:28
Class RooBMixDecay is a RooAbsAnaConvPdf implementation that describes the decay of B mesons with the...
Definition: RooBMixDecay.h:23
RooCategory represents a fundamental (non-derived) discrete value object.
Definition: RooCategory.h:24
RooDataSet is a container class to hold unbinned data.
Definition: RooDataSet.h:31
Class RooGaussModel implements a RooResolutionModel that models a Gaussian distribution.
Definition: RooGaussModel.h:26
A RooPlot is a plot frame and a container for graphics objects within that frame.
Definition: RooPlot.h:41
TAxis * GetYaxis() const
Definition: RooPlot.cxx:1123
virtual void Draw(Option_t *options=0)
Draw this plot and all of the elements it contains.
Definition: RooPlot.cxx:558
RooRealVar represents a fundamental (non-derived) real valued object.
Definition: RooRealVar.h:36
virtual void SetTitleOffset(Float_t offset=1)
Set distance between the axis and the axis title Offset is a correction factor with respect to the "s...
Definition: TAttAxis.cxx:294
The Canvas class.
Definition: TCanvas.h:31
RooCmdArg Slice(const RooArgSet &sliceSet)
RooCmdArg Cut(const char *cutSpec)
const char * Title
Definition: TXMLSetup.cxx:67