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Reference Guide
rf605_profilell.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook -js
4/// Likelihood and minimization: working with the profile likelihood estimator
5///
6/// \macro_image
7/// \macro_output
8/// \macro_code
9/// \author 07/2008 - Wouter Verkerke
10
11#include "RooRealVar.h"
12#include "RooDataSet.h"
13#include "RooGaussian.h"
14#include "RooConstVar.h"
15#include "RooAddPdf.h"
16#include "RooMinimizer.h"
17#include "TCanvas.h"
18#include "TAxis.h"
19#include "RooPlot.h"
20using namespace RooFit;
21
22void rf605_profilell()
23{
24 // C r e a t e m o d e l a n d d a t a s e t
25 // -----------------------------------------------
26
27 // Observable
28 RooRealVar x("x", "x", -20, 20);
29
30 // Model (intentional strong correlations)
31 RooRealVar mean("mean", "mean of g1 and g2", 0, -10, 10);
32 RooRealVar sigma_g1("sigma_g1", "width of g1", 3);
33 RooGaussian g1("g1", "g1", x, mean, sigma_g1);
34
35 RooRealVar sigma_g2("sigma_g2", "width of g2", 4, 3.0, 6.0);
36 RooGaussian g2("g2", "g2", x, mean, sigma_g2);
37
38 RooRealVar frac("frac", "frac", 0.5, 0.0, 1.0);
39 RooAddPdf model("model", "model", RooArgList(g1, g2), frac);
40
41 // Generate 1000 events
42 RooDataSet *data = model.generate(x, 1000);
43
44 // C o n s t r u c t p l a i n l i k e l i h o o d
45 // ---------------------------------------------------
46
47 // Construct unbinned likelihood
48 RooAbsReal *nll = model.createNLL(*data, NumCPU(2));
49
50 // Minimize likelihood w.r.t all parameters before making plots
51 RooMinimizer(*nll).migrad();
52
53 // Plot likelihood scan frac
54 RooPlot *frame1 = frac.frame(Bins(10), Range(0.01, 0.95), Title("LL and profileLL in frac"));
55 nll->plotOn(frame1, ShiftToZero());
56
57 // Plot likelihood scan in sigma_g2
58 RooPlot *frame2 = sigma_g2.frame(Bins(10), Range(3.3, 5.0), Title("LL and profileLL in sigma_g2"));
59 nll->plotOn(frame2, ShiftToZero());
60
61 // C o n s t r u c t p r o f i l e l i k e l i h o o d i n f r a c
62 // -----------------------------------------------------------------------
63
64 // The profile likelihood estimator on nll for frac will minimize nll w.r.t
65 // all floating parameters except frac for each evaluation
66
67 RooAbsReal *pll_frac = nll->createProfile(frac);
68
69 // Plot the profile likelihood in frac
70 pll_frac->plotOn(frame1, LineColor(kRed));
71
72 // Adjust frame maximum for visual clarity
73 frame1->SetMinimum(0);
74 frame1->SetMaximum(3);
75
76 // C o n s t r u c t p r o f i l e l i k e l i h o o d i n s i g m a _ g 2
77 // -------------------------------------------------------------------------------
78
79 // The profile likelihood estimator on nll for sigma_g2 will minimize nll
80 // w.r.t all floating parameters except sigma_g2 for each evaluation
81 RooAbsReal *pll_sigmag2 = nll->createProfile(sigma_g2);
82
83 // Plot the profile likelihood in sigma_g2
84 pll_sigmag2->plotOn(frame2, LineColor(kRed));
85
86 // Adjust frame maximum for visual clarity
87 frame2->SetMinimum(0);
88 frame2->SetMaximum(3);
89
90 // Make canvas and draw RooPlots
91 TCanvas *c = new TCanvas("rf605_profilell", "rf605_profilell", 800, 400);
92 c->Divide(2);
93 c->cd(1);
94 gPad->SetLeftMargin(0.15);
95 frame1->GetYaxis()->SetTitleOffset(1.4);
96 frame1->Draw();
97 c->cd(2);
98 gPad->SetLeftMargin(0.15);
99 frame2->GetYaxis()->SetTitleOffset(1.4);
100 frame2->Draw();
101
102 delete pll_frac;
103 delete pll_sigmag2;
104 delete nll;
105}
#define c(i)
Definition: RSha256.hxx:101
@ kRed
Definition: Rtypes.h:64
#define gPad
Definition: TVirtualPad.h:286
RooAbsReal is the common abstract base class for objects that represent a real value and implements f...
Definition: RooAbsReal.h:53
virtual RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1=RooCmdArg(), const RooCmdArg &arg2=RooCmdArg(), const RooCmdArg &arg3=RooCmdArg(), const RooCmdArg &arg4=RooCmdArg(), const RooCmdArg &arg5=RooCmdArg(), const RooCmdArg &arg6=RooCmdArg(), const RooCmdArg &arg7=RooCmdArg(), const RooCmdArg &arg8=RooCmdArg(), const RooCmdArg &arg9=RooCmdArg(), const RooCmdArg &arg10=RooCmdArg()) const
Plot (project) PDF on specified frame.
virtual RooAbsReal * createProfile(const RooArgSet &paramsOfInterest)
Create a RooProfileLL object that eliminates all nuisance parameters in the present function.
Definition: RooAbsReal.cxx:486
RooAddPdf is an efficient implementation of a sum of PDFs of the form.
Definition: RooAddPdf.h:29
RooArgList is a container object that can hold multiple RooAbsArg objects.
Definition: RooArgList.h:21
RooDataSet is a container class to hold unbinned data.
Definition: RooDataSet.h:31
Plain Gaussian p.d.f.
Definition: RooGaussian.h:25
RooMinimizer is a wrapper class around ROOT::Fit:Fitter that provides a seamless interface between th...
Definition: RooMinimizer.h:38
Int_t migrad()
Execute MIGRAD.
A RooPlot is a plot frame and a container for graphics objects within that frame.
Definition: RooPlot.h:41
virtual void SetMinimum(Double_t minimum=-1111)
Set minimum value of Y axis.
Definition: RooPlot.cxx:958
TAxis * GetYaxis() const
Definition: RooPlot.cxx:1123
virtual void SetMaximum(Double_t maximum=-1111)
Set maximum value of Y axis.
Definition: RooPlot.cxx:948
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
Double_t x[n]
Definition: legend1.C:17
Template specialisation used in RooAbsArg:
RooCmdArg ShiftToZero()
RooCmdArg NumCPU(Int_t nCPU, Int_t interleave=0)
RooCmdArg LineColor(Color_t color)
RooCmdArg Bins(Int_t nbin)
const char * Title
Definition: TXMLSetup.cxx:67
Ta Range(0, 0, 1, 1)