123 npar =
f1->GetNpar();
129 for (
Int_t i=0;i<nPoints;i++) {
136 for (
Int_t i=0;i<nPoints;i++) {
137 for (
Int_t j=0;j<nPoints;j++) {
142 f1->SetNumberFitPoints(npfit);
147 return par[0]/(dm*dm+par[2]*par[2]);
160 if(rnd->
Rndm()>bgr) {
200 if(rnd->
Rndm()>frac) {
201 return rnd->
Gaus(mTrue+smallBias,smallSigma);
203 return rnd->
Gaus(mTrue+wideBias,wideSigma);
219 Double_t const luminosityData=100000;
220 Double_t const luminosityMC=1000000;
223 Int_t const nDet=250;
224 Int_t const nGen=100;
233 TH1D *histMgenMC=
new TH1D(
"MgenMC",
";mass(gen)",nGen,xminGen,xmaxGen);
234 TH1D *histMdetMC=
new TH1D(
"MdetMC",
";mass(det)",nDet,xminDet,xmaxDet);
235 TH2D *histMdetGenMC=
new TH2D(
"MdetgenMC",
";mass(det);mass(gen)",
236 nDet,xminDet,xmaxDet,nGen,xminGen,xmaxGen);
238 for(
Int_t i=0;i<neventMC;i++) {
251 histMgenMC->
Fill(mGen,luminosityData/luminosityMC);
253 histMdetMC->
Fill(mDet,luminosityData/luminosityMC);
268 histMdetGenMC->
Fill(mDet,mGen,luminosityData/luminosityMC);
275 TH2D *histMdetGenSysMC=
new TH2D(
"MdetgenSysMC",
";mass(det);mass(gen)",
276 nDet,xminDet,xmaxDet,nGen,xminGen,xmaxGen);
277 neventMC=rnd->
Poisson(luminosityMC*crossSection);
278 for(
Int_t i=0;i<neventMC;i++) {
284 histMdetGenSysMC->
Fill(mDet,mGen,luminosityData/luminosityMC);
290 TH1D *histMgenData=
new TH1D(
"MgenData",
";mass(gen)",nGen,xminGen,xmaxGen);
291 TH1D *histMdetData=
new TH1D(
"MdetData",
";mass(det)",nDet,xminDet,xmaxDet);
292 Int_t neventData=rnd->
Poisson(luminosityData*crossSection);
293 for(
Int_t i=0;i<neventData;i++) {
300 histMgenData->
Fill(mGen);
303 histMdetData->
Fill(mDet);
308 TH1D *histDensityGenData=
new TH1D(
"DensityGenData",
";mass(gen)",
309 nGen,xminGen,xmaxGen);
310 TH1D *histDensityGenMC=
new TH1D(
"DensityGenMC",
";mass(gen)",
311 nGen,xminGen,xmaxGen);
312 for(
Int_t i=1;i<=nGen;i++) {
330 if(unfold.SetInput(histMdetData)>=10000) {
331 std::cout<<
"Unfolding result may be wrong\n";
347#ifdef VERBOSE_LCURVE_SCAN
353 iBest=unfold.ScanLcurve(nScan,tauMin,tauMax,&lCurve,&logTauX,&logTauY);
356#ifdef VERBOSE_LCURVE_SCAN
366 TH2D *histMdetGenSys1=
new TH2D(
"Mdetgensys1",
";mass(det);mass(gen)",
367 nDet,xminDet,xmaxDet,nGen,xminGen,xmaxGen);
368 for(
Int_t i=0;i<=nDet+1;i++) {
370 for(
Int_t j=0;j<=nGen+1;j++) {
383 std::cout<<
"tau="<<unfold.GetTau()<<
"\n";
384 std::cout<<
"chi**2="<<unfold.GetChi2A()<<
"+"<<unfold.GetChi2L()
385 <<
" / "<<unfold.GetNdf()<<
"\n";
386 std::cout<<
"chi**2(sys)="<<unfold.GetChi2Sys()<<
"\n";
402 TH1 *histMunfold=unfold.GetOutput(
"Unfolded");
405 TH1 *histMdetFold=unfold.GetFoldedOutput(
"FoldedBack");
413 TH2 *histEmatTotal=unfold.GetEmatrixTotal(
"EmatTotal");
416 TH1D *histTotalError=
417 new TH1D(
"TotalError",
";mass(gen)",nGen,xminGen,xmaxGen);
418 for(
Int_t bin=1;bin<=nGen;bin++) {
429 TH1 *histRhoi=unfold.GetRhoItotal(
"rho_I",
443 gFitter->
SetFCN(chisquare_corr);
445 TF1 *bw=
new TF1(
"bw",bw_func,xminGen,xmaxGen,3);
452 histMunfold->
Fit(bw,
"UE");
466 histMdetGenMC->
Draw(
"BOX");
474 histTotalError->
Draw(
"E");
476 histMunfold->
Draw(
"SAME E1");
478 histDensityGenData->
Draw(
"SAME");
479 histDensityGenMC->
Draw(
"SAME HIST");
487 histMdetFold->
Draw();
488 histMdetMC->
Draw(
"SAME HIST");
490 TH1 *histInput=unfold.GetInput(
"Minput",
";mass(det)");
493 histInput->
Draw(
"SAME");
503 bestLogTauLogChi2->
Draw(
"*");
509 bestLcurve->
Draw(
"*");
511 output.
SaveAs(
"testUnfold1.ps");
int Int_t
Signed integer 4 bytes (int).
double Double_t
Double 8 bytes.
externInt_t gErrorIgnoreLevel
errors with level below this value will be ignored. Default is kUnset.
virtual void SetLineColor(Color_t lcolor)
Set the line color.
virtual void SetMarkerColor(Color_t mcolor=1)
Set the marker color.
TVirtualPad * cd(Int_t subpadnumber=0) override
Set current canvas & pad.
static void RejectPoint(Bool_t reject=kTRUE)
static Bool_t RejectedPoint()
virtual void SetParameter(Int_t param, Double_t value)
void Draw(Option_t *chopt="") override
Default Draw method for all objects.
1-D histogram with a double per channel (see TH1 documentation)
TH1 is the base class of all histogram classes in ROOT.
virtual Double_t GetBinCenter(Int_t bin) const
Return bin center for 1D histogram.
virtual TFitResultPtr Fit(const char *formula, Option_t *option="", Option_t *goption="", Double_t xmin=0, Double_t xmax=0)
Fit histogram with function fname.
virtual Int_t GetNbinsX() const
virtual void SetBinError(Int_t bin, Double_t error)
Set the bin Error Note that this resets the bin eror option to be of Normal Type and for the non-empt...
virtual Int_t Fill(Double_t x)
Increment bin with abscissa X by 1.
void Draw(Option_t *option="") override
Draw this histogram with options.
static void SetDefaultSumw2(Bool_t sumw2=kTRUE)
When this static function is called with sumw2=kTRUE, all new histograms will automatically activate ...
virtual void SetBinContent(Int_t bin, Double_t content)
Set bin content see convention for numbering bins in TH1::GetBin In case the bin number is greater th...
virtual Double_t GetBinContent(Int_t bin) const
Return content of bin number bin.
virtual Double_t GetBinWidth(Int_t bin) const
Return bin width for 1D histogram.
2-D histogram with a double per channel (see TH1 documentation)
Service class for 2-D histogram classes.
void SetBinContent(Int_t bin, Double_t content) override
Set bin content.
Double_t GetBinContent(Int_t binx, Int_t biny) const override
Int_t Fill(Double_t) override
Invalid Fill method.
void Divide(Int_t nx=1, Int_t ny=1, Float_t xmargin=0.01, Float_t ymargin=0.01, Int_t color=0) override
Automatic pad generation by division.
void SaveAs(const char *filename="", Option_t *option="") const override
Save the pad content in a file.
Random number generator class based on M.
This is the base class for the ROOT Random number generators.
virtual Double_t Gaus(Double_t mean=0, Double_t sigma=1)
Samples a random number from the standard Normal (Gaussian) Distribution with the given mean and sigm...
Double_t Rndm() override
Machine independent random number generator.
virtual ULong64_t Poisson(Double_t mean)
Generates a random integer N according to a Poisson law.
Base class for spline implementation containing the Draw/Paint methods.
void Draw(Option_t *option="") override
Draw this function with its current attributes.
virtual void GetKnot(Int_t i, Double_t &x, Double_t &y) const =0
An algorithm to unfold distributions from detector to truth level.
@ kSysErrModeRelative
matrix gives the relative shifts
@ kSysErrModeMatrix
matrix is an alternative to the default matrix, the errors are the difference to the original matrix
@ kHistMapOutputVert
truth level on y-axis of the response matrix
Abstract Base Class for Fitting.
virtual TObject * GetObjectFit() const
virtual void SetFCN(void(*fcn)(Int_t &, Double_t *, Double_t &f, Double_t *, Int_t))
To set the address of the minimization objective function called by the native compiler (see function...
virtual TObject * GetUserFunc() const
static TVirtualFitter * Fitter(TObject *obj, Int_t maxpar=25)
Static function returning a pointer to the current fitter.
Double_t Sqrt(Double_t x)
Returns the square root of x.
LongDouble_t Power(LongDouble_t x, LongDouble_t y)
Returns x raised to the power y.
Double_t Tan(Double_t)
Returns the tangent of an angle of x radians.
Short_t Abs(Short_t d)
Returns the absolute value of parameter Short_t d.