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Reference Guide
rf306_condpereventerrors.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook
4/// 'MULTIDIMENSIONAL MODELS' RooFit tutorial macro #306
5///
6/// Complete example with use of conditional p.d.f. with per-event errors
7///
8/// \macro_image
9/// \macro_output
10/// \macro_code
11/// \author 07/2008 - Wouter Verkerke
12
13
14#include "RooRealVar.h"
15#include "RooDataSet.h"
16#include "RooGaussian.h"
17#include "RooConstVar.h"
18#include "RooGaussModel.h"
19#include "RooDecay.h"
20#include "RooLandau.h"
21#include "RooPlot.h"
22#include "TCanvas.h"
23#include "TAxis.h"
24#include "TH2D.h"
25using namespace RooFit ;
26
27
28
30{
31 // B - p h y s i c s p d f w i t h p e r - e v e n t G a u s s i a n r e s o l u t i o n
32 // ----------------------------------------------------------------------------------------------
33
34 // Observables
35 RooRealVar dt("dt","dt",-10,10) ;
36 RooRealVar dterr("dterr","per-event error on dt",0.01,10) ;
37
38 // Build a gaussian resolution model scaled by the per-event error = gauss(dt,bias,sigma*dterr)
39 RooRealVar bias("bias","bias",0,-10,10) ;
40 RooRealVar sigma("sigma","per-event error scale factor",1,0.1,10) ;
41 RooGaussModel gm("gm1","gauss model scaled bt per-event error",dt,bias,sigma,dterr) ;
42
43 // Construct decay(dt) (x) gauss1(dt|dterr)
44 RooRealVar tau("tau","tau",1.548) ;
45 RooDecay decay_gm("decay_gm","decay",dt,tau,gm,RooDecay::DoubleSided) ;
46
47
48
49 // C o n s t r u c t f a k e ' e x t e r n a l ' d a t a w i t h p e r - e v e n t e r r o r
50 // ------------------------------------------------------------------------------------------------------
51
52 // Use landau p.d.f to get somewhat realistic distribution with long tail
53 RooLandau pdfDtErr("pdfDtErr","pdfDtErr",dterr,RooConst(1),RooConst(0.25)) ;
54 RooDataSet* expDataDterr = pdfDtErr.generate(dterr,10000) ;
55
56
57
58 // S a m p l e d a t a f r o m c o n d i t i o n a l d e c a y _ g m ( d t | d t e r r )
59 // ---------------------------------------------------------------------------------------------
60
61 // Specify external dataset with dterr values to use decay_dm as conditional p.d.f.
62 RooDataSet* data = decay_gm.generate(dt,ProtoData(*expDataDterr)) ;
63
64
65
66 // F i t c o n d i t i o n a l d e c a y _ d m ( d t | d t e r r )
67 // ---------------------------------------------------------------------
68
69 // Specify dterr as conditional observable
70 decay_gm.fitTo(*data,ConditionalObservables(dterr)) ;
71
72
73
74 // P l o t c o n d i t i o n a l d e c a y _ d m ( d t | d t e r r )
75 // ---------------------------------------------------------------------
76
77
78 // Make two-dimensional plot of conditional p.d.f in (dt,dterr)
79 TH1* hh_decay = decay_gm.createHistogram("hh_decay",dt,Binning(50),YVar(dterr,Binning(50))) ;
80 hh_decay->SetLineColor(kBlue) ;
81
82
83 // Plot decay_gm(dt|dterr) at various values of dterr
84 RooPlot* frame = dt.frame(Title("Slices of decay(dt|dterr) at various dterr")) ;
85 for (Int_t ibin=0 ; ibin<100 ; ibin+=20) {
86 dterr.setBin(ibin) ;
87 decay_gm.plotOn(frame,Normalization(5.)) ;
88 }
89
90
91 // Make projection of data an dt
92 RooPlot* frame2 = dt.frame(Title("Projection of decay(dt|dterr) on dt")) ;
93 data->plotOn(frame2) ;
94
95 // Make projection of decay(dt|dterr) on dt.
96 //
97 // Instead of integrating out dterr, make a weighted average of curves
98 // at values dterr_i as given in the external dataset.
99 // (The kTRUE argument bins the data before projection to speed up the process)
100 decay_gm.plotOn(frame2,ProjWData(*expDataDterr,kTRUE)) ;
101
102
103
104 // Draw all frames on canvas
105 TCanvas* c = new TCanvas("rf306_condpereventerrors","rf306_condperventerrors",1200, 400);
106 c->Divide(3) ;
107 c->cd(1) ; gPad->SetLeftMargin(0.20) ; hh_decay->GetZaxis()->SetTitleOffset(2.5) ; hh_decay->Draw("surf") ;
108 c->cd(2) ; gPad->SetLeftMargin(0.15) ; frame->GetYaxis()->SetTitleOffset(1.6) ; frame->Draw() ;
109 c->cd(3) ; gPad->SetLeftMargin(0.15) ; frame2->GetYaxis()->SetTitleOffset(1.6) ; frame2->Draw() ;
110
111
112}
113
#define c(i)
Definition: RSha256.hxx:101
int Int_t
Definition: RtypesCore.h:41
const Bool_t kTRUE
Definition: RtypesCore.h:87
@ kBlue
Definition: Rtypes.h:63
#define gPad
Definition: TVirtualPad.h:286
RooDataSet is a container class to hold unbinned data.
Definition: RooDataSet.h:31
Single or double sided decay function that can be analytically convolved with any RooResolutionModel ...
Definition: RooDecay.h:22
@ DoubleSided
Definition: RooDecay.h:25
Class RooGaussModel implements a RooResolutionModel that models a Gaussian distribution.
Definition: RooGaussModel.h:26
Landau distribution p.d.f.
Definition: RooLandau.h:24
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
virtual void SetLineColor(Color_t lcolor)
Set the line color.
Definition: TAttLine.h:40
The Canvas class.
Definition: TCanvas.h:31
The TH1 histogram class.
Definition: TH1.h:56
TAxis * GetZaxis()
Definition: TH1.h:318
virtual void Draw(Option_t *option="")
Draw this histogram with options.
Definition: TH1.cxx:2974
const Double_t sigma
RooCmdArg ProjWData(const RooAbsData &projData, Bool_t binData=kFALSE)
RooCmdArg ProtoData(const RooDataSet &protoData, Bool_t randomizeOrder=kFALSE, Bool_t resample=kFALSE)
RooCmdArg Binning(const RooAbsBinning &binning)
RooCmdArg YVar(const RooAbsRealLValue &var, const RooCmdArg &arg=RooCmdArg::none())
RooConstVar & RooConst(Double_t val)
RooCmdArg ConditionalObservables(const RooArgSet &set)
RooCmdArg Normalization(Double_t scaleFactor)
const char * Title
Definition: TXMLSetup.cxx:67