Complete example with use of full p.d.f. with per-event errors
{
RooRealVar dterr(
"dterr",
"per-event error on dt",0.01,10) ;
RooDataSet* expDataDterr = pdfDtErr.generate(dterr,10000) ;
RooHistPdf pdfErr(
"pdfErr",
"pdfErr",dterr,*expHistDterr) ;
RooPlot* frame = dt.frame(
Title(
"Projection of model(dt|dterr) on dt")) ;
TCanvas*
c =
new TCanvas(
"rf307_fullpereventerrors",
"rf307_fullperventerrors",800, 400);
}
RooArgSet is a container object that can hold multiple RooAbsArg objects.
RooDataSet is a container class to hold N-dimensional binned data.
RooDataSet is a container class to hold unbinned data.
RooDataHist * binnedClone(const char *newName=0, const char *newTitle=0) const
Return binned clone of this dataset.
Single or double sided decay function that can be analytically convolved with any RooResolutionModel ...
Class RooGaussModel implements a RooResolutionModel that models a Gaussian distribution.
RooHistPdf implements a probablity density function sampled from a multidimensional histogram.
Landau distribution p.d.f.
A RooPlot is a plot frame and a container for graphics objects within that frame.
virtual void Draw(Option_t *options=0)
Draw this plot and all of the elements it contains.
RooProdPdf is an efficient implementation of a product of PDFs of the form.
RooRealVar represents a fundamental (non-derived) real valued object.
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...
virtual void SetLineColor(Color_t lcolor)
Set the line color.
virtual void Draw(Option_t *option="")
Draw this histogram with options.
RooCmdArg Binning(const RooAbsBinning &binning)
RooCmdArg YVar(const RooAbsRealLValue &var, const RooCmdArg &arg=RooCmdArg::none())
RooConstVar & RooConst(Double_t val)
RooCmdArg Conditional(const RooArgSet &pdfSet, const RooArgSet &depSet, Bool_t depsAreCond=kFALSE)