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Reference Guide
rf513_wsfactory_tools.C
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1/// \file
2/// \ingroup tutorial_roofit
3/// \notebook -nodraw
4/// Organization and simultaneous fits: RooCustomizer and RooSimWSTool interface in factory workspace tool in a complex
5/// standalone B physics example
6///
7/// \macro_output
8/// \macro_code
9/// \author 04/2009 - Wouter Verkerke
10
11#include "RooRealVar.h"
12#include "RooDataSet.h"
13#include "RooGaussian.h"
14#include "RooConstVar.h"
15#include "RooChebychev.h"
16#include "RooAddPdf.h"
17#include "RooWorkspace.h"
18#include "RooPlot.h"
19#include "TCanvas.h"
20#include "TAxis.h"
21using namespace RooFit;
22
24{
25 RooWorkspace *w = new RooWorkspace("w");
26
27 // B u i l d a c o m p l e x e x a m p l e p . d . f .
28 // -----------------------------------------------------------
29
30 // Make signal model for CPV: A bmixing decay function in t (convoluted with a triple Gaussian resolution model)
31 // times a Gaussian function the reconstructed mass
32 w->factory("PROD::sig( BMixDecay::sig_t( dt[-20,20], mixState[mixed=1,unmix=-1], tagFlav[B0=1,B0bar=-1], "
33 "tau[1.54], dm[0.472], w[0.05], dw[0],"
34 "AddModel::gm({GaussModel(dt,biasC[-10,10],sigmaC[0.1,3],dterr[0.01,0.2]),"
35 "GaussModel(dt,0,sigmaT[3,10]),"
36 "GaussModel(dt,0,20)},{fracC[0,1],fracT[0,1]}),"
37 "DoubleSided ),"
38 "Gaussian::sig_m( mes[5.20,5.30], mB0[5.20,5.30], sigmB0[0.01,0.05] ))");
39
40 // Make background component: A plain decay function in t times an Argus function in the reconstructed mass
41 w->factory("PROD::bkg( Decay::bkg_t( dt, tau, gm, DoubleSided),"
42 "ArgusBG::bkg_m( mes, 5.291, k[-100,-10]))");
43
44 // Make composite model from the signal and background component
45 w->factory("SUM::model( Nsig[5000,0,10000]*sig, NBkg[500,0,10000]*bkg )");
46
47 // E x a m p l e o f R o o S i m W S T o o l i n t e r f a c e
48 // ------------------------------------------------------------------
49
50 // Introduce a flavour tagging category tagCat as observable with 4 states corresponding
51 // to 4 flavour tagging techniques with different performance that require different
52 // parameterizations of the fit model
53 //
54 // RooSimWSTool operation:
55 // - Make 4 clones of model (for each tagCat) state, that will gain an individual
56 // copy of parameters w,dw and biasC. The other parameters remain common
57 // - Make a simultaneous p.d.f. of the 4 clones assigning each to the appropriate
58 // state of the tagCat index category
59
60 // RooSimWSTool is interfaced as meta-type SIMCLONE in the factory. The $SplitParam()
61 // argument maps to the SplitParam() named argument in the RooSimWSTool constructor
62 w->factory("SIMCLONE::model_sim( model, $SplitParam({w,dw,biasC},tagCat[Lep,Kao,NT1,NT2]))");
63
64 // E x a m p l e o f R o o C u s t o m i z e r i n t e r f a c e
65 // -------------------------------------------------------------------
66 //
67 // Class RooCustomizer makes clones of existing p.d.f.s with certain prescribed
68 // modifications (branch of leaf node replacements)
69 //
70 // Here we take our model (the original before RooSimWSTool modifications)
71 // and request that the parameter w (the mistag rate) is replaced with
72 // an expression-based function that calculates w in terms of the Dilution
73 // parameter D that is defined as D = 1-2*w
74
75 // Make a clone model_D of original 'model' replacing 'w' with 'expr('0.5-D/2',D[0,1])'
76 w->factory("EDIT::model_D(model, w=expr('0.5-D/2',D[0,1]) )");
77
78 // Print workspace contents
79 w->Print();
80
81 // Make workspace visible on command line
82 gDirectory->Add(w);
83}
#define gDirectory
Definition: TDirectory.h:218
The RooWorkspace is a persistable container for RooFit projects.
Definition: RooWorkspace.h:43
void Print(Option_t *opts=0) const
Print contents of the workspace.
RooFactoryWSTool & factory()
Return instance to factory tool.
Template specialisation used in RooAbsArg: