Loading [MathJax]/extensions/tex2jax.js
Logo ROOT   6.16/01
Reference Guide
All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Properties Friends Macros Modules Pages
RooArgusBG.cxx
Go to the documentation of this file.
1/*****************************************************************************
2 * Project: RooFit *
3 * Package: RooFitModels *
4 * @(#)root/roofit:$Id$
5 * Authors: *
6 * WV, Wouter Verkerke, UC Santa Barbara, verkerke@slac.stanford.edu *
7 * DK, David Kirkby, UC Irvine, dkirkby@uci.edu *
8 * *
9 * Copyright (c) 2000-2005, Regents of the University of California *
10 * and Stanford University. All rights reserved. *
11 * *
12 * Redistribution and use in source and binary forms, *
13 * with or without modification, are permitted according to the terms *
14 * listed in LICENSE (http://roofit.sourceforge.net/license.txt) *
15 *****************************************************************************/
16
17/** \class RooArgusBG
18 \ingroup Roofit
19
20RooArgusBG is a RooAbsPdf implementation describing the ARGUS background shape.
21*/
22
23#include "RooFit.h"
24
25#include "Riostream.h"
26#include "Riostream.h"
27#include <math.h>
28
29#include "RooArgusBG.h"
30#include "RooRealVar.h"
31#include "RooRealConstant.h"
32#include "RooMath.h"
33#include "TMath.h"
34
35#include "TError.h"
36
37using namespace std;
38
40
41////////////////////////////////////////////////////////////////////////////////
42/// Constructor.
43
44RooArgusBG::RooArgusBG(const char *name, const char *title,
45 RooAbsReal& _m, RooAbsReal& _m0, RooAbsReal& _c) :
46 RooAbsPdf(name, title),
47 m("m","Mass",this,_m),
48 m0("m0","Resonance mass",this,_m0),
49 c("c","Slope parameter",this,_c),
50 p("p","Power",this,(RooRealVar&)RooRealConstant::value(0.5))
51{
52}
53
54////////////////////////////////////////////////////////////////////////////////
55/// Constructor.
56
57RooArgusBG::RooArgusBG(const char *name, const char *title,
58 RooAbsReal& _m, RooAbsReal& _m0, RooAbsReal& _c, RooAbsReal& _p) :
59 RooAbsPdf(name, title),
60 m("m","Mass",this,_m),
61 m0("m0","Resonance mass",this,_m0),
62 c("c","Slope parameter",this,_c),
63 p("p","Power",this,_p)
64{
65}
66
67////////////////////////////////////////////////////////////////////////////////
68/// Constructor.
69
70RooArgusBG::RooArgusBG(const RooArgusBG& other, const char* name) :
71 RooAbsPdf(other,name),
72 m("m",this,other.m),
73 m0("m0",this,other.m0),
74 c("c",this,other.c),
75 p("p",this,other.p)
76{
77}
78
79////////////////////////////////////////////////////////////////////////////////
80
82 Double_t t= m/m0;
83 if(t >= 1) return 0;
84
85 Double_t u= 1 - t*t;
86 //cout << "c = " << c << " result = " << m*TMath::Power(u,p)*exp(c*u) << endl ;
87 return m*TMath::Power(u,p)*exp(c*u) ;
88}
89
90////////////////////////////////////////////////////////////////////////////////
91
92Int_t RooArgusBG::getAnalyticalIntegral(RooArgSet& allVars, RooArgSet& analVars, const char* /*rangeName*/) const
93{
94 if (p.arg().isConstant()) {
95 // We can integrate over m if power = 0.5
96 if (matchArgs(allVars,analVars,m) && p == 0.5) return 1;
97 }
98 return 0;
99
100}
101
102////////////////////////////////////////////////////////////////////////////////
103
104Double_t RooArgusBG::analyticalIntegral(Int_t code, const char* rangeName) const
105{
106 R__ASSERT(code==1);
107 // Formula for integration over m when p=0.5
108 static const Double_t pi = atan2(0.0,-1.0);
109 Double_t min = (m.min(rangeName) < m0) ? m.min(rangeName) : m0;
110 Double_t max = (m.max(rangeName) < m0) ? m.max(rangeName) : m0;
111 Double_t f1 = (1.-TMath::Power(min/m0,2));
112 Double_t f2 = (1.-TMath::Power(max/m0,2));
113 Double_t aLow, aHigh ;
114 aLow = -0.5*m0*m0*(exp(c*f1)*sqrt(f1)/c + 0.5/TMath::Power(-c,1.5)*sqrt(pi)*RooMath::erf(sqrt(-c*f1)));
115 aHigh = -0.5*m0*m0*(exp(c*f2)*sqrt(f2)/c + 0.5/TMath::Power(-c,1.5)*sqrt(pi)*RooMath::erf(sqrt(-c*f2)));
116 Double_t area = aHigh - aLow;
117 //cout << "c = " << c << "aHigh = " << aHigh << " aLow = " << aLow << " area = " << area << endl ;
118 return area;
119
120}
#define c(i)
Definition: RSha256.hxx:101
int Int_t
Definition: RtypesCore.h:41
double Double_t
Definition: RtypesCore.h:55
#define ClassImp(name)
Definition: Rtypes.h:363
#define R__ASSERT(e)
Definition: TError.h:96
double atan2(double, double)
double sqrt(double)
double exp(double)
Bool_t isConstant() const
Definition: RooAbsArg.h:266
RooAbsPdf is the abstract interface for all probability density functions The class provides hybrid a...
Definition: RooAbsPdf.h:41
RooAbsReal is the common abstract base class for objects that represent a real value and implements f...
Definition: RooAbsReal.h:53
Bool_t matchArgs(const RooArgSet &allDeps, RooArgSet &numDeps, const RooArgProxy &a) const
Utility function for use in getAnalyticalIntegral().
RooArgSet is a container object that can hold multiple RooAbsArg objects.
Definition: RooArgSet.h:28
RooArgusBG is a RooAbsPdf implementation describing the ARGUS background shape.
Definition: RooArgusBG.h:25
RooRealProxy m
Definition: RooArgusBG.h:40
Double_t evaluate() const
Evaluate this PDF / function / constant. Needs to be overridden by all derived classes.
Definition: RooArgusBG.cxx:81
Int_t getAnalyticalIntegral(RooArgSet &allVars, RooArgSet &analVars, const char *rangeName=0) const
Interface function getAnalyticalIntergral advertises the analytical integrals that are supported.
Definition: RooArgusBG.cxx:92
RooRealProxy c
Definition: RooArgusBG.h:42
RooRealProxy p
Definition: RooArgusBG.h:43
Double_t analyticalIntegral(Int_t code, const char *rangeName=0) const
Implements the actual analytical integral(s) advertised by getAnalyticalIntegral.
Definition: RooArgusBG.cxx:104
RooRealProxy m0
Definition: RooArgusBG.h:41
static std::complex< double > erf(const std::complex< double > z)
complex erf function
Definition: RooMath.cxx:580
RooRealConstant provides static functions to create and keep track of RooRealVar constants.
Double_t min(const char *rname=0) const
Definition: RooRealProxy.h:56
const RooAbsReal & arg() const
Definition: RooRealProxy.h:43
Double_t max(const char *rname=0) const
Definition: RooRealProxy.h:57
RooRealVar represents a fundamental (non-derived) real valued object.
Definition: RooRealVar.h:36
TF1 * f1
Definition: legend1.C:11
static constexpr double pi
LongDouble_t Power(LongDouble_t x, LongDouble_t y)
Definition: TMath.h:723
STL namespace.
auto * m
Definition: textangle.C:8