45   RooRealVar dw(
"dw", 
"delta mistag rate for B0/B0bar", 0.1);
 
   47   RooCategory mixState(
"mixState", 
"B0/B0bar mixing state");
 
   48   mixState.defineType(
"mixed", -1);
 
   49   mixState.defineType(
"unmixed", 1);
 
   51   RooCategory tagFlav(
"tagFlav", 
"Flavour of the tagged B0");
 
   52   tagFlav.defineType(
"B0", 1);
 
   53   tagFlav.defineType(
"B0bar", -1);
 
   59   RooBMixDecay bmix(
"bmix", 
"decay", dt, mixState, tagFlav, tau, dm, 
w, dw, truthModel, 
RooBMixDecay::DoubleSided);
 
   72   data->plotOn(frame1, 
Cut(
"tagFlav==tagFlav::B0"));
 
   73   bmix.plotOn(frame1, 
Slice(tagFlav, 
"B0"));
 
   79   RooPlot *frame2 = dt.
frame(
Title(
"B decay distribution of mixed events (B0/B0bar)"));
 
   81   data->plotOn(frame2, 
Cut(
"mixState==mixState::mixed&&tagFlav==tagFlav::B0"));
 
   82   bmix.plotOn(frame2, 
Slice({{&tagFlav, 
"B0"}, {&mixState, 
"mixed"}}));
 
   88   RooPlot *frame3 = dt.
frame(
Title(
"B decay distribution of unmixed events (B0/B0bar)"));
 
   90   data->plotOn(frame3, 
Cut(
"mixState==mixState::unmixed&&tagFlav==tagFlav::B0"));
 
   91   bmix.plotOn(frame3, 
Slice({{&tagFlav, 
"B0"}, {&mixState, 
"unmixed"}}));
 
   94   bmix.plotOn(frame3, 
Slice({{&tagFlav, 
"B0bar"}, {&mixState, 
"unmixed"}}), 
LineColor(
kCyan));
 
  104   RooRealVar CPeigen(
"CPeigen", 
"CP eigen value", -1);
 
  105   RooRealVar absLambda(
"absLambda", 
"|lambda|", 1, 0, 2);
 
  106   RooRealVar argLambda(
"absLambda", 
"|lambda|", 0.7, -1, 1);
 
  107   RooRealVar effR(
"effR", 
"B0/B0bar reco efficiency ratio", 1);
 
  110   RooBCPEffDecay bcp(
"bcp", 
"bcp", dt, tagFlav, tau, dm, 
w, CPeigen, absLambda, argLambda, effR, dw, truthModel,
 
  120   RooPlot *frame4 = dt.
frame(
Title(
"B decay distribution with CPV(|l|=1,Im(l)=0.7) (B0/B0bar)"));
 
  122   data2->
plotOn(frame4, 
Cut(
"tagFlav==tagFlav::B0"));
 
  123   bcp.plotOn(frame4, 
Slice(tagFlav, 
"B0"));
 
  137   RooPlot *frame5 = dt.
frame(
Title(
"B decay distribution with CPV(|l|=0.7,Im(l)=0.7) (B0/B0bar)"));
 
  139   data3->
plotOn(frame5, 
Cut(
"tagFlav==tagFlav::B0"));
 
  140   bcp.plotOn(frame5, 
Slice(tagFlav, 
"B0"));
 
  153   RooRealVar DGbG(
"DGbG", 
"DGamma/GammaAvg", 0.5, -1, 1);
 
  154   RooRealVar Adir(
"Adir", 
"-[1-abs(l)**2]/[1+abs(l)**2]", 0);
 
  155   RooRealVar Amix(
"Amix", 
"2Im(l)/[1+abs(l)**2]", 0.7);
 
  156   RooRealVar Adel(
"Adel", 
"2Re(l)/[1+abs(l)**2]", 0.7);
 
  167   RooBDecay bcpg(
"bcpg", 
"bcpg", dt, tau, DG, 
RooConst(1), fsinh, fcos, fsin, dm, truthModel, 
RooBDecay::DoubleSided);
 
  176   RooPlot *frame6 = dt.
frame(
Title(
"B decay distribution with CPV(Im(l)=0.7,Re(l)=0.7,|l|=1,dG/G=0.5) (B0/B0bar)"));
 
  178   data4->
plotOn(frame6, 
Cut(
"tagFlav==tagFlav::B0"));
 
  179   bcpg.plotOn(frame6, 
Slice(tagFlav, 
"B0"));
 
  184   TCanvas *
c = 
new TCanvas(
"rf708_bphysics", 
"rf708_bphysics", 1200, 800);
 
  187   gPad->SetLeftMargin(0.15);
 
  191   gPad->SetLeftMargin(0.15);
 
  195   gPad->SetLeftMargin(0.15);
 
  199   gPad->SetLeftMargin(0.15);
 
  203   gPad->SetLeftMargin(0.15);
 
  207   gPad->SetLeftMargin(0.15);
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void data
 
virtual RooPlot * plotOn(RooPlot *frame, const RooCmdArg &arg1=RooCmdArg::none(), const RooCmdArg &arg2=RooCmdArg::none(), const RooCmdArg &arg3=RooCmdArg::none(), const RooCmdArg &arg4=RooCmdArg::none(), const RooCmdArg &arg5=RooCmdArg::none(), const RooCmdArg &arg6=RooCmdArg::none(), const RooCmdArg &arg7=RooCmdArg::none(), const RooCmdArg &arg8=RooCmdArg::none()) const
 
RooArgList is a container object that can hold multiple RooAbsArg objects.
 
RooArgSet is a container object that can hold multiple RooAbsArg objects.
 
PDF describing decay time distribution of B meson including effects of standard model CP violation.
 
Most general description of B decay time distribution with effects of CP violation,...
 
Class RooBMixDecay is a RooAbsAnaConvPdf implementation that describes the decay of B mesons with the...
 
RooCategory is an object to represent discrete states.
 
RooDataSet is a container class to hold unbinned data.
 
A RooPlot is a plot frame and a container for graphics objects within that frame.
 
static RooPlot * frame(const RooAbsRealLValue &var, double xmin, double xmax, Int_t nBins)
Create a new frame for a given variable in x.
 
void Draw(Option_t *options=nullptr) override
Draw this plot and all of the elements it contains.
 
RooRealVar represents a variable that can be changed from the outside.
 
RooTruthModel is an implementation of RooResolution model that provides a delta-function resolution m...
 
virtual void SetTitleOffset(Float_t offset=1)
Set distance between the axis and the axis title.
 
RooConstVar & RooConst(double val)
 
RooCmdArg MarkerColor(Color_t color)
 
RooCmdArg Slice(const RooArgSet &sliceSet)
 
RooCmdArg Cut(const char *cutSpec)
 
RooCmdArg LineColor(Color_t color)
 
The namespace RooFit contains mostly switches that change the behaviour of functions of PDFs (or othe...