1 | /* ======================================================================== *\
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2 | !
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3 | ! *
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4 | ! * This file is part of MARS, the MAGIC Analysis and Reconstruction
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5 | ! * Software. It is distributed to you in the hope that it can be a useful
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6 | ! * and timesaving tool in analysing Data of imaging Cerenkov telescopes.
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7 | ! * It is distributed WITHOUT ANY WARRANTY.
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8 | ! *
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9 | ! * Permission to use, copy, modify and distribute this software and its
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10 | ! * documentation for any purpose is hereby granted without fee,
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11 | ! * provided that the above copyright notice appear in all copies and
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12 | ! * that both that copyright notice and this permission notice appear
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13 | ! * in supporting documentation. It is provided "as is" without express
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14 | ! * or implied warranty.
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15 | ! *
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16 | !
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17 | !
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18 | ! Author(s): Thomas Bretz, 3/2004 <mailto:tbretz@astro.uni-wuerzburg.de>
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19 | !
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20 | ! Copyright: MAGIC Software Development, 2000-2004
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21 | !
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22 | !
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23 | \* ======================================================================== */
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24 |
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25 | //////////////////////////////////////////////////////////////////////////////
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26 | //
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27 | // MHFalseSource
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28 | //
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29 | // Create a false source plot. For the Binning in x,y the object MBinning
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30 | // "BinningFalseSource" is taken from the paremeter list.
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31 | //
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32 | // The binning in alpha is currently fixed as 18bins from 0 to 90deg.
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33 | //
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34 | // If MTime, MObservatory and MPointingPos is available in the paremeter
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35 | // list each image is derotated.
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36 | //
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37 | // MHFalseSource fills a 3D histogram with alpha distribution for
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38 | // each (derotated) x and y position.
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39 | //
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40 | // Only a radius of 1.2deg around the camera center is taken into account.
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41 | //
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42 | // The displayed histogram is the projection of alpha<fAlphaCut into
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43 | // the x,y plain and the projection of alpha>90-fAlphaCut
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44 | //
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45 | // By using the context menu (find it in a small region between the single
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46 | // pads) you can change the AlphaCut 'online'
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47 | //
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48 | // Here is a slightly simplified version of the algorithm:
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49 | // ------------------------------------------------------
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50 | // MHillas hil; // Taken as second argument in MFillH
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51 | //
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52 | // MSrcPosCam src;
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53 | // MHillasSrc hsrc;
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54 | // hsrc.SetSrcPos(&src);
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55 | //
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56 | // for (int ix=0; ix<nx; ix++)
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57 | // for (int iy=0; iy<ny; iy++)
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58 | // {
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59 | // TVector2 v(cx[ix], cy[iy]); //cx center of x-bin ix
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60 | // if (rho!=0) //cy center of y-bin iy
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61 | // v=v.Rotate(-rho); //image rotation angle
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62 | //
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63 | // src.SetXY(v); //source position in the camera
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64 | //
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65 | // if (!hsrc.Calc(hil)) //calc source dependant hillas
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66 | // return;
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67 | //
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68 | // //fill absolute alpha into histogram
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69 | // const Double_t alpha = hsrc.GetAlpha();
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70 | // fHist.Fill(cx[ix], cy[iy], TMath::Abs(alpha), w);
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71 | // }
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72 | // }
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73 | //
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74 | // Use MHFalse Source like this:
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75 | // -----------------------------
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76 | // MFillH fill("MHFalseSource", "MHillas");
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77 | // or
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78 | // MHFalseSource hist;
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79 | // hist.SetAlphaCut(12.5); // The default value
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80 | // hist.SetBgmean(55); // The default value
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81 | // MFillH fill(&hist, "MHillas");
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82 | //
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83 | // To be implemented:
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84 | // ------------------
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85 | // - a switch to use alpha or |alpha|
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86 | // - taking the binning for alpha from the parlist (binning is
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87 | // currently fixed)
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88 | // - a possibility to change the fit-function (eg using a different TF1)
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89 | // - a possibility to change the fit algorithm (eg which paremeters
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90 | // are fixed at which time)
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91 | // - use a different varaible than alpha
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92 | // - a possiblity to change the algorithm which is used to calculate
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93 | // alpha (or another parameter) is missing (this could be done using
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94 | // a tasklist somewhere...)
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95 | // - a more clever (and faster) algorithm to fill the histogram, eg by
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96 | // calculating alpha once and fill the two coils around the mean
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97 | // - more drawing options...
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98 | // - Move Significance() to a more 'general' place and implement
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99 | // also different algorithms like (Li/Ma)
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100 | // - implement fit for best alpha distribution -- online (Paint)
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101 | //
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102 | //////////////////////////////////////////////////////////////////////////////
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103 | #include "MHFalseSource.h"
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104 |
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105 | #include <TF1.h>
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106 | #include <TH2.h>
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107 | #include <TGraph.h>
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108 | #include <TStyle.h>
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109 | #include <TCanvas.h>
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110 | #include <TPaveText.h>
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111 | #include <TStopwatch.h>
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112 |
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113 | #include "MGeomCam.h"
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114 | #include "MSrcPosCam.h"
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115 | #include "MHillasSrc.h"
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116 | #include "MTime.h"
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117 | #include "MObservatory.h"
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118 | #include "MPointingPos.h"
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119 | #include "MAstroSky2Local.h"
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120 | #include "MStatusDisplay.h"
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121 | #include "MMath.h"
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122 |
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123 | #include "MBinning.h"
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124 | #include "MParList.h"
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125 |
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126 | #include "MLog.h"
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127 | #include "MLogManip.h"
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128 |
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129 | ClassImp(MHFalseSource);
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130 |
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131 | using namespace std;
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132 |
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133 | // --------------------------------------------------------------------------
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134 | //
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135 | // Default Constructor
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136 | //
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137 | MHFalseSource::MHFalseSource(const char *name, const char *title)
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138 | : fMm2Deg(-1), fUseMmScale(kTRUE), fAlphaCut(12.5), fBgMean(55)
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139 | {
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140 | //
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141 | // set the name and title of this object
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142 | //
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143 | fName = name ? name : "MHFalseSource";
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144 | fTitle = title ? title : "3D-plot of Alpha vs x, y";
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145 |
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146 | fHist.SetDirectory(NULL);
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147 |
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148 | fHist.SetName("Alpha");
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149 | fHist.SetTitle("3D-plot of Alpha vs x, y");
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150 | fHist.SetXTitle("y [\\circ]");
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151 | fHist.SetYTitle("x [\\circ]");
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152 | fHist.SetZTitle("\\alpha [\\circ]");
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153 | }
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154 |
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155 | // --------------------------------------------------------------------------
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156 | //
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157 | // Set the alpha cut (|alpha|<fAlphaCut) which is use to estimate the
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158 | // number of excess events
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159 | //
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160 | void MHFalseSource::SetAlphaCut(Float_t alpha)
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161 | {
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162 | if (alpha<0)
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163 | *fLog << warn << "Alpha<0... taking absolute value." << endl;
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164 |
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165 | fAlphaCut = TMath::Abs(alpha);
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166 |
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167 | Modified();
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168 | }
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169 |
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170 | // --------------------------------------------------------------------------
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171 | //
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172 | // Set mean alpha around which the off sample is determined
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173 | // (fBgMean-fAlphaCut/2<|fAlpha|<fBgMean+fAlphaCut/2) which is use
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174 | // to estimate the number of off events
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175 | //
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176 | void MHFalseSource::SetBgMean(Float_t alpha)
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177 | {
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178 | if (alpha<0)
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179 | *fLog << warn << "Alpha<0... taking absolute value." << endl;
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180 |
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181 | fBgMean = TMath::Abs(alpha);
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182 |
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183 | Modified();
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184 | }
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185 |
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186 | // --------------------------------------------------------------------------
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187 | //
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188 | // Use this function to setup your own conversion factor between degrees
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189 | // and millimeters. The conversion factor should be the one calculated in
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190 | // MGeomCam. Use this function with Caution: You could create wrong values
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191 | // by setting up your own scale factor.
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192 | //
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193 | void MHFalseSource::SetMm2Deg(Float_t mmdeg)
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194 | {
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195 | if (mmdeg<0)
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196 | {
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197 | *fLog << warn << dbginf << "Warning - Conversion factor < 0 - nonsense. Ignored." << endl;
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198 | return;
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199 | }
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200 |
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201 | if (fMm2Deg>=0)
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202 | *fLog << warn << dbginf << "Warning - Conversion factor already set. Overwriting" << endl;
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203 |
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204 | fMm2Deg = mmdeg;
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205 | }
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206 |
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207 | // --------------------------------------------------------------------------
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208 | //
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209 | // With this function you can convert the histogram ('on the fly') between
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210 | // degrees and millimeters.
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211 | //
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212 | void MHFalseSource::SetMmScale(Bool_t mmscale)
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213 | {
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214 | if (fUseMmScale == mmscale)
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215 | return;
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216 |
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217 | if (fMm2Deg<0)
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218 | {
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219 | *fLog << warn << dbginf << "Warning - Sorry, no conversion factor for conversion available." << endl;
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220 | return;
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221 | }
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222 |
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223 | if (fUseMmScale)
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224 | {
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225 | fHist.SetXTitle("y [mm]");
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226 | fHist.SetYTitle("x [mm]");
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227 |
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228 | fHist.Scale(1./fMm2Deg);
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229 | }
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230 | else
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231 | {
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232 | fHist.SetXTitle("y [\\circ]");
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233 | fHist.SetYTitle("x [\\circ]");
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234 |
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235 | fHist.Scale(1./fMm2Deg);
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236 | }
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237 |
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238 | fUseMmScale = mmscale;
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239 | }
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240 |
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241 | // --------------------------------------------------------------------------
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242 | //
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243 | // Calculate Significance as
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244 | // significance = (s-b)/sqrt(s+k*k*b) mit k=s/b
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245 | //
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246 | // s: total number of events in signal region
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247 | // b: number of background events in signal region
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248 | //
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249 | Double_t MHFalseSource::Significance(Double_t s, Double_t b)
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250 | {
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251 | return MMath::Significance(s, b);
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252 | }
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253 |
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254 | // --------------------------------------------------------------------------
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255 | //
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256 | // calculates the significance according to Li & Ma
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257 | // ApJ 272 (1983) 317, Formula 17
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258 | //
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259 | // s // s: number of on events
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260 | // b // b: number of off events
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261 | // alpha = t_on/t_off; // t: observation time
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262 | //
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263 | Double_t MHFalseSource::SignificanceLiMa(Double_t s, Double_t b, Double_t alpha)
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264 | {
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265 | return MMath::SignificanceLiMa(s, b);
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266 | }
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267 |
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268 | // --------------------------------------------------------------------------
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269 | //
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270 | // Set binnings (takes BinningFalseSource) and prepare filling of the
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271 | // histogram.
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272 | //
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273 | // Also search for MTime, MObservatory and MPointingPos
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274 | //
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275 | Bool_t MHFalseSource::SetupFill(const MParList *plist)
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276 | {
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277 | const MGeomCam *geom = (MGeomCam*)plist->FindObject("MGeomCam");
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278 | if (geom)
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279 | {
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280 | fMm2Deg = geom->GetConvMm2Deg();
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281 | fUseMmScale = kFALSE;
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282 |
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283 | fHist.SetXTitle("y [\\circ]");
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284 | fHist.SetYTitle("x [\\circ]");
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285 | }
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286 |
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287 | MBinning binsa;
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288 | binsa.SetEdges(18, 0, 90);
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289 |
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290 | const MBinning *bins = (MBinning*)plist->FindObject("BinningFalseSource");
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291 | if (!bins)
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292 | {
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293 | Float_t r = geom ? geom->GetMaxRadius() : 600;
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294 | r /= 3;
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295 | if (!fUseMmScale)
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296 | r *= fMm2Deg;
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297 |
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298 | MBinning b;
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299 | b.SetEdges(20, -r, r);
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300 | SetBinning(&fHist, &b, &b, &binsa);
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301 | }
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302 | else
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303 | SetBinning(&fHist, bins, bins, &binsa);
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304 |
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305 | fPointPos = (MPointingPos*)plist->FindObject(AddSerialNumber("MPointingPos"));
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306 | if (!fPointPos)
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307 | *fLog << warn << "MPointingPos not found... no derotation." << endl;
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308 |
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309 | fTime = (MTime*)plist->FindObject(AddSerialNumber("MTime"));
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310 | if (!fTime)
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311 | *fLog << warn << "MTime not found... no derotation." << endl;
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312 |
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313 | fObservatory = (MObservatory*)plist->FindObject(AddSerialNumber("MObservatory"));
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314 | if (!fObservatory)
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315 | *fLog << err << "MObservatory not found... no derotation." << endl;
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316 |
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317 |
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318 | return kTRUE;
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319 | }
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320 |
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321 | // --------------------------------------------------------------------------
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322 | //
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323 | // Fill the histogram. For details see the code or the class description
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324 | //
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325 | Bool_t MHFalseSource::Fill(const MParContainer *par, const Stat_t w)
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326 | {
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327 | MHillas *hil = (MHillas*)par;
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328 |
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329 | const Double_t maxr = 0.98*TMath::Abs(fHist.GetBinCenter(1));
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330 |
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331 | // Get camera rotation angle
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332 | Double_t rho = 0;
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333 | if (fTime && fObservatory && fPointPos)
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334 | rho = fPointPos->RotationAngle(*fObservatory, *fTime);
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335 | //if (fPointPos)
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336 | // rho = fPointPos->RotationAngle(*fObservatory);
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337 |
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338 | MSrcPosCam src;
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339 | MHillasSrc hsrc;
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340 | hsrc.SetSrcPos(&src);
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341 |
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342 | // This is because a 3D histogram x and y are exchanged...
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343 | const Int_t nx = fHist.GetNbinsY();
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344 | const Int_t ny = fHist.GetNbinsX();
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345 | Axis_t cx[nx];
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346 | Axis_t cy[ny];
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347 | fHist.GetYaxis()->GetCenter(cx);
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348 | fHist.GetXaxis()->GetCenter(cy);
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349 |
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350 | for (int ix=0; ix<nx; ix++)
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351 | {
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352 | for (int iy=0; iy<ny; iy++)
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353 | {
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354 | if (TMath::Hypot(cx[ix], cy[iy])>maxr)
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355 | continue;
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356 |
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357 | TVector2 v(cx[ix], cy[iy]);
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358 | if (rho!=0)
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359 | v=v.Rotate(-rho);
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360 |
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361 | if (!fUseMmScale)
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362 | v *= 1./fMm2Deg;
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363 |
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364 | src.SetXY(v);
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365 |
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366 | if (!hsrc.Calc(hil))
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367 | {
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368 | *fLog << warn << "Calculation of MHillasSrc failed for x=" << cx[ix] << " y=" << cy[iy] << endl;
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369 | return kFALSE;
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370 | }
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371 |
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372 | const Double_t alpha = hsrc.GetAlpha();
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373 |
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374 | // This is because a 3D histogram x and y are exchanged...
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375 | fHist.Fill(cy[iy], cx[ix], TMath::Abs(alpha), w);
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376 | }
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377 | }
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378 |
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379 | return kTRUE;
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380 | }
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381 |
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382 | // --------------------------------------------------------------------------
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383 | //
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384 | // Create projection for off data, taking sum of bin contents of
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385 | // range (fBgMean-fAlphaCut/2, fBgMean+fAlphaCut) Making sure to take
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386 | // the same number of bins than for on-data
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387 | //
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388 | void MHFalseSource::ProjectOff(TH2D *h2)
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389 | {
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390 | TAxis &axe = *fHist.GetZaxis();
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391 |
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392 | // Find range to cut (left edge and width)
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393 | const Int_t f = axe.FindBin(fBgMean-fAlphaCut/2);
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394 | const Int_t l = axe.FindBin(fAlphaCut)+f-1;
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395 |
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396 | axe.SetRange(f, l);
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397 | const Float_t cut1 = axe.GetBinLowEdge(f);
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398 | const Float_t cut2 = axe.GetBinUpEdge(l);
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399 | h2->SetTitle(Form("Distribution of %.1f\\circ<|\\alpha|<%.1f\\circ in x,y", cut1, cut2));
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400 |
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401 | // Get projection for range
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402 | TH2D *p = (TH2D*)fHist.Project3D("xy_off");
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403 |
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404 | // Reset range
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405 | axe.SetRange(0,9999);
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406 |
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407 | // Move contents from projection to h2
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408 | h2->Reset();
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409 | h2->Add(p);
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410 |
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411 | // Delete p
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412 | delete p;
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413 |
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414 | // Set Minimum as minimum value Greater Than 0
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415 | h2->SetMinimum(GetMinimumGT(*h2));
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416 | }
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417 |
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418 | // --------------------------------------------------------------------------
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419 | //
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420 | // Create projection for on data, taking sum of bin contents of
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421 | // range (0, fAlphaCut)
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422 | //
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423 | void MHFalseSource::ProjectOn(TH2D *h3)
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424 | {
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425 | TAxis &axe = *fHist.GetZaxis();
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426 |
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427 | // Find range to cut
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428 | axe.SetRangeUser(0, fAlphaCut);
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429 | const Float_t cut = axe.GetBinUpEdge(axe.GetLast());
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430 | h3->SetTitle(Form("Distribution of |\\alpha|<%.1f\\circ in x,y", cut));
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431 |
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432 | // Get projection for range
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433 | TH2D *p = (TH2D*)fHist.Project3D("xy_on");
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434 |
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435 | // Reset range
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436 | axe.SetRange(0,9999);
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437 |
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438 | // Move contents from projection to h3
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439 | h3->Reset();
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440 | h3->Add(p);
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441 | delete p;
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442 |
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443 | // Set Minimum as minimum value Greater Than 0
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444 | h3->SetMinimum(GetMinimumGT(*h3));
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445 | }
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446 |
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447 | // --------------------------------------------------------------------------
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448 | //
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449 | // Update the projections
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450 | //
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451 | void MHFalseSource::Paint(Option_t *opt)
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452 | {
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453 | // sigma = (s-b)/sqrt(s+k*k*b) mit k=s/b
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454 |
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455 | gStyle->SetPalette(1, 0);
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456 |
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457 | TVirtualPad *padsave = gPad;
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458 |
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459 | TH1D* h1;
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460 | TH2D* h2;
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461 | TH2D* h3;
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462 | TH2D* h4;
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463 |
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464 | padsave->cd(3);
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465 | if ((h3 = (TH2D*)gPad->FindObject("Alpha_xy_on")))
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466 | ProjectOn(h3);
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467 |
|
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468 | padsave->cd(4);
|
---|
469 | if ((h2 = (TH2D*)gPad->FindObject("Alpha_xy_off")))
|
---|
470 | ProjectOff(h2);
|
---|
471 |
|
---|
472 | padsave->cd(2);
|
---|
473 | if (h2 && h3 && (h4 = (TH2D*)gPad->FindObject("Alpha_xy_sig")))
|
---|
474 | {
|
---|
475 | const Int_t nx = h4->GetXaxis()->GetNbins();
|
---|
476 | const Int_t ny = h4->GetYaxis()->GetNbins();
|
---|
477 |
|
---|
478 | Int_t maxx=nx/2;
|
---|
479 | Int_t maxy=ny/2;
|
---|
480 |
|
---|
481 | Int_t max = h4->GetBin(maxx, maxy);
|
---|
482 |
|
---|
483 | for (int ix=0; ix<nx; ix++)
|
---|
484 | for (int iy=0; iy<ny; iy++)
|
---|
485 | {
|
---|
486 | const Int_t n = h4->GetBin(ix+1, iy+1);
|
---|
487 |
|
---|
488 | const Double_t s = h3->GetBinContent(n);
|
---|
489 | const Double_t b = h2->GetBinContent(n);
|
---|
490 |
|
---|
491 | const Double_t sig = Significance(s, b);
|
---|
492 |
|
---|
493 | h4->SetBinContent(n, sig);
|
---|
494 |
|
---|
495 | if (sig>h4->GetBinContent(max) && sig!=0)
|
---|
496 | {
|
---|
497 | max = n;
|
---|
498 | maxx=ix;
|
---|
499 | maxy=iy;
|
---|
500 | }
|
---|
501 | }
|
---|
502 |
|
---|
503 | padsave->cd(1);
|
---|
504 | if ((h1 = (TH1D*)gPad->FindObject("Alpha")))
|
---|
505 | {
|
---|
506 | const Double_t x = h4->GetXaxis()->GetBinCenter(maxx);
|
---|
507 | const Double_t y = h4->GetYaxis()->GetBinCenter(maxy);
|
---|
508 | const Double_t s = h4->GetBinContent(max);
|
---|
509 |
|
---|
510 | // This is because a 3D histogram x and y are vice versa
|
---|
511 | // Than for their projections
|
---|
512 | TH1 *h = fHist.ProjectionZ("Alpha", maxy, maxy, maxx, maxx);
|
---|
513 | h->SetTitle(Form("Distribution of \\alpha for x=%.2f y=%.2f (\\sigma_{max}=%.1f)", x, y, s));
|
---|
514 | }
|
---|
515 | }
|
---|
516 |
|
---|
517 | gPad = padsave;
|
---|
518 | }
|
---|
519 |
|
---|
520 | // --------------------------------------------------------------------------
|
---|
521 | //
|
---|
522 | // Draw the histogram
|
---|
523 | //
|
---|
524 | void MHFalseSource::Draw(Option_t *opt)
|
---|
525 | {
|
---|
526 | TVirtualPad *pad = gPad ? gPad : MakeDefCanvas(this);
|
---|
527 | pad->SetBorderMode(0);
|
---|
528 |
|
---|
529 | AppendPad("");
|
---|
530 |
|
---|
531 | pad->Divide(2, 2);
|
---|
532 |
|
---|
533 | // draw the 2D histogram Sigmabar versus Theta
|
---|
534 | pad->cd(1);
|
---|
535 | gPad->SetBorderMode(0);
|
---|
536 | TH1 *h1 = fHist.ProjectionZ("Alpha");
|
---|
537 | h1->SetDirectory(NULL);
|
---|
538 | h1->SetTitle("Distribution of \\alpha");
|
---|
539 | h1->SetXTitle(fHist.GetZaxis()->GetTitle());
|
---|
540 | h1->SetYTitle("Counts");
|
---|
541 | h1->Draw(opt);
|
---|
542 | h1->SetBit(kCanDelete);
|
---|
543 |
|
---|
544 | pad->cd(4);
|
---|
545 | gPad->SetBorderMode(0);
|
---|
546 | fHist.GetZaxis()->SetRangeUser(fBgMean-fAlphaCut/2, fBgMean+fAlphaCut/2);
|
---|
547 | TH1 *h2 = fHist.Project3D("xy_off");
|
---|
548 | h2->SetDirectory(NULL);
|
---|
549 | h2->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
550 | h2->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
551 | h2->Draw("colz");
|
---|
552 | h2->SetBit(kCanDelete);
|
---|
553 |
|
---|
554 | pad->cd(3);
|
---|
555 | gPad->SetBorderMode(0);
|
---|
556 | fHist.GetZaxis()->SetRangeUser(0,fAlphaCut);
|
---|
557 | TH1 *h3 = fHist.Project3D("xy_on");
|
---|
558 | fHist.GetZaxis()->SetRange(0,9999);
|
---|
559 | h3->SetDirectory(NULL);
|
---|
560 | h3->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
561 | h3->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
562 | h3->Draw("colz");
|
---|
563 | h3->SetBit(kCanDelete);
|
---|
564 |
|
---|
565 | pad->cd(2);
|
---|
566 | gPad->SetBorderMode(0);
|
---|
567 | fHist.GetZaxis()->SetRange(0,0);
|
---|
568 | TH1 *h4 = fHist.Project3D("xy_sig"); // Do this to get the correct binning....
|
---|
569 | fHist.GetZaxis()->SetRange(0,9999);
|
---|
570 | h4->SetTitle("Significance");
|
---|
571 | h4->SetDirectory(NULL);
|
---|
572 | h4->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
573 | h4->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
574 | h4->Draw("colz");
|
---|
575 | h4->SetBit(kCanDelete);
|
---|
576 | }
|
---|
577 |
|
---|
578 | // --------------------------------------------------------------------------
|
---|
579 | //
|
---|
580 | // Everything which is in the main pad belongs to this class!
|
---|
581 | //
|
---|
582 | Int_t MHFalseSource::DistancetoPrimitive(Int_t px, Int_t py)
|
---|
583 | {
|
---|
584 | return 0;
|
---|
585 | }
|
---|
586 |
|
---|
587 | // --------------------------------------------------------------------------
|
---|
588 | //
|
---|
589 | // Set all sub-pads to Modified()
|
---|
590 | //
|
---|
591 | void MHFalseSource::Modified()
|
---|
592 | {
|
---|
593 | if (!gPad)
|
---|
594 | return;
|
---|
595 |
|
---|
596 | TVirtualPad *padsave = gPad;
|
---|
597 | padsave->Modified();
|
---|
598 | padsave->cd(1);
|
---|
599 | gPad->Modified();
|
---|
600 | padsave->cd(2);
|
---|
601 | gPad->Modified();
|
---|
602 | padsave->cd(3);
|
---|
603 | gPad->Modified();
|
---|
604 | padsave->cd(4);
|
---|
605 | gPad->Modified();
|
---|
606 | gPad->cd();
|
---|
607 | }
|
---|
608 |
|
---|
609 | // --------------------------------------------------------------------------
|
---|
610 | //
|
---|
611 | // This is a preliminary implementation of a alpha-fit procedure for
|
---|
612 | // all possible source positions. It will be moved into its own
|
---|
613 | // more powerfull class soon.
|
---|
614 | //
|
---|
615 | // The fit function is "gaus(0)+pol2(3)" which is equivalent to:
|
---|
616 | // [0]*exp(-0.5*((x-[1])/[2])^2) + [3] + [4]*x + [5]*x^2
|
---|
617 | // or
|
---|
618 | // A*exp(-0.5*((x-mu)/sigma)^2) + a + b*x + c*x^2
|
---|
619 | //
|
---|
620 | // Parameter [1] is fixed to 0 while the alpha peak should be
|
---|
621 | // symmetric around alpha=0.
|
---|
622 | //
|
---|
623 | // Parameter [4] is fixed to 0 because the first derivative at
|
---|
624 | // alpha=0 should be 0, too.
|
---|
625 | //
|
---|
626 | // In a first step the background is fitted between bgmin and bgmax,
|
---|
627 | // while the parameters [0]=0 and [2]=1 are fixed.
|
---|
628 | //
|
---|
629 | // In a second step the signal region (alpha<sigmax) is fittet using
|
---|
630 | // the whole function with parameters [1], [3], [4] and [5] fixed.
|
---|
631 | //
|
---|
632 | // The number of excess and background events are calculated as
|
---|
633 | // s = int(0, sigint, gaus(0)+pol2(3))
|
---|
634 | // b = int(0, sigint, pol2(3))
|
---|
635 | //
|
---|
636 | // The Significance is calculated using the Significance() member
|
---|
637 | // function.
|
---|
638 | //
|
---|
639 | void MHFalseSource::FitSignificance(Float_t sigint, Float_t sigmax, Float_t bgmin, Float_t bgmax, Byte_t polynom)
|
---|
640 | {
|
---|
641 | TH1D h0a("A", "", 50, 0, 4000);
|
---|
642 | TH1D h4a("chisq1", "", 50, 0, 35);
|
---|
643 | //TH1D h5a("prob1", "", 50, 0, 1.1);
|
---|
644 | TH1D h6("signifcance", "", 50, -20, 20);
|
---|
645 |
|
---|
646 | TH1D h1("mu", "Parameter \\mu", 50, -1, 1);
|
---|
647 | TH1D h2("sigma", "Parameter \\sigma", 50, 0, 90);
|
---|
648 | TH1D h3("b", "Parameter b", 50, -0.1, 0.1);
|
---|
649 |
|
---|
650 | TH1D h0b("a", "Parameter a (red), A (blue)", 50, 0, 4000);
|
---|
651 | TH1D h4b("\\chi^{2}", "\\chi^{2} (red, green) / significance (black)", 50, 0, 35);
|
---|
652 | //TH1D h5b("prob", "Fit probability: Bg(red), F(blue)", 50, 0, 1.1);
|
---|
653 |
|
---|
654 | h0a.SetLineColor(kBlue);
|
---|
655 | h4a.SetLineColor(kBlue);
|
---|
656 | //h5a.SetLineColor(kBlue);
|
---|
657 | h0b.SetLineColor(kRed);
|
---|
658 | h4b.SetLineColor(kRed);
|
---|
659 | //h5b.SetLineColor(kRed);
|
---|
660 |
|
---|
661 | TH1 *hist = fHist.Project3D("xy_fit");
|
---|
662 | hist->SetDirectory(0);
|
---|
663 | TH1 *hists = fHist.Project3D("xy_fit");
|
---|
664 | hists->SetDirectory(0);
|
---|
665 | TH1 *histb = fHist.Project3D("xy_fit");
|
---|
666 | histb->SetDirectory(0);
|
---|
667 | hist->Reset();
|
---|
668 | hists->Reset();
|
---|
669 | histb->Reset();
|
---|
670 | hist->SetNameTitle("Significance",
|
---|
671 | Form("Fit Region: Signal<%.1f\\circ, %.1f\\circ<Bg<%.1f\\circ",
|
---|
672 | sigmax, bgmin, bgmax));
|
---|
673 | hists->SetNameTitle("Excess", Form("Number of excess events for \\alpha<%.0f\\circ", sigint));
|
---|
674 | histb->SetNameTitle("Background", Form("Number of background events for \\alpha<%.0f\\circ", sigint));
|
---|
675 | hist->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
676 | hists->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
677 | histb->SetXTitle(fHist.GetYaxis()->GetTitle());
|
---|
678 | hist->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
679 | hists->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
680 | histb->SetYTitle(fHist.GetXaxis()->GetTitle());
|
---|
681 |
|
---|
682 | const Double_t w = fHist.GetZaxis()->GetBinWidth(1);
|
---|
683 |
|
---|
684 | // xmin, xmax, npar
|
---|
685 | //TF1 func("MyFunc", fcn, 0, 90, 6);
|
---|
686 | // Implementing the function yourself is only about 5% faster
|
---|
687 | TF1 func("", Form("gaus(0) + pol%d(3)", polynom), 0, 90);
|
---|
688 | TArrayD maxpar(func.GetNpar());
|
---|
689 |
|
---|
690 | /*
|
---|
691 | func.SetParName(0, "A");
|
---|
692 | func.SetParName(1, "mu");
|
---|
693 | func.SetParName(2, "sigma");
|
---|
694 | func.SetParName(3, "a");
|
---|
695 | func.SetParName(4, "b");
|
---|
696 | func.SetParName(5, "c");
|
---|
697 | */
|
---|
698 |
|
---|
699 | func.FixParameter(1, 0);
|
---|
700 | func.FixParameter(4, 0);
|
---|
701 | func.SetParLimits(2, 0, 90);
|
---|
702 | func.SetParLimits(3, -1, 1);
|
---|
703 |
|
---|
704 | const Int_t nx = hist->GetXaxis()->GetNbins();
|
---|
705 | const Int_t ny = hist->GetYaxis()->GetNbins();
|
---|
706 | const Int_t nr = nx*nx+ny*ny;
|
---|
707 |
|
---|
708 | Double_t maxalpha0=0;
|
---|
709 | Double_t maxs=3;
|
---|
710 |
|
---|
711 | Int_t maxx=0;
|
---|
712 | Int_t maxy=0;
|
---|
713 |
|
---|
714 | TStopwatch clk;
|
---|
715 | clk.Start();
|
---|
716 |
|
---|
717 | *fLog << inf;
|
---|
718 | *fLog << "Signal fit: alpha < " << sigmax << endl;
|
---|
719 | *fLog << "Integration: alpha < " << sigint << endl;
|
---|
720 | *fLog << "Background fit: " << bgmin << " < alpha < " << bgmax << endl;
|
---|
721 | *fLog << "Polynom order: " << (int)polynom << endl;
|
---|
722 | *fLog << "Fitting False Source Plot..." << flush;
|
---|
723 |
|
---|
724 | TH1 *h=0;
|
---|
725 | for (int ix=1; ix<=nx; ix++)
|
---|
726 | for (int iy=1; iy<=ny; iy++)
|
---|
727 | {
|
---|
728 | // This is because a 3D histogram x and y are vice versa
|
---|
729 | // Than for their projections
|
---|
730 | h = fHist.ProjectionZ("AlphaFit", iy, iy, ix, ix);
|
---|
731 |
|
---|
732 | const Double_t alpha0 = h->GetBinContent(1);
|
---|
733 |
|
---|
734 | // Check for the regios which is not filled...
|
---|
735 | if (alpha0==0)
|
---|
736 | continue;
|
---|
737 |
|
---|
738 | if (alpha0>maxalpha0)
|
---|
739 | maxalpha0=alpha0;
|
---|
740 |
|
---|
741 | // First fit a polynom in the off region
|
---|
742 | func.FixParameter(0, 0);
|
---|
743 | func.FixParameter(2, 1);
|
---|
744 | func.ReleaseParameter(3);
|
---|
745 |
|
---|
746 | for (int i=5; i<func.GetNpar(); i++)
|
---|
747 | func.ReleaseParameter(i);
|
---|
748 |
|
---|
749 | h->Fit(&func, "N0Q", "", bgmin, bgmax);
|
---|
750 | //*fLog << dbg << ix << "/" << iy << ": " << func.GetParameter(3) << " " << func.GetParameter(4) << endl;
|
---|
751 |
|
---|
752 | h4a.Fill(func.GetChisquare());
|
---|
753 | //h5a.Fill(func.GetProb());
|
---|
754 |
|
---|
755 | //func.SetParLimits(0, 0.5*h->GetBinContent(1), 1.5*h->GetBinContent(1));
|
---|
756 | //func.SetParLimits(2, 5, 90);
|
---|
757 |
|
---|
758 | func.ReleaseParameter(0);
|
---|
759 | //func.ReleaseParameter(1);
|
---|
760 | func.ReleaseParameter(2);
|
---|
761 | func.FixParameter(3, func.GetParameter(3));
|
---|
762 | for (int i=5; i<func.GetNpar(); i++)
|
---|
763 | func.FixParameter(i, func.GetParameter(i));
|
---|
764 |
|
---|
765 | // Do not allow signals smaller than the background
|
---|
766 | const Double_t A = alpha0-func.GetParameter(3);
|
---|
767 | const Double_t dA = TMath::Abs(A);
|
---|
768 | func.SetParLimits(0, -dA*4, dA*4);
|
---|
769 | func.SetParLimits(2, 0, 90);
|
---|
770 |
|
---|
771 | // Now fit a gaus in the on region on top of the polynom
|
---|
772 | func.SetParameter(0, A);
|
---|
773 | func.SetParameter(2, sigmax*0.75);
|
---|
774 |
|
---|
775 | h->Fit(&func, "N0Q", "", 0, sigmax);
|
---|
776 | //*fLog << dbg << " " << func.GetParameter(0) << " " << func.GetParameter(1) << " " << func.GetParameter(2) << endl;
|
---|
777 |
|
---|
778 | TArrayD p(func.GetNpar(), func.GetParameters());
|
---|
779 |
|
---|
780 | // Fill results into some histograms
|
---|
781 | h0a.Fill(p[0]);
|
---|
782 | h0b.Fill(p[3]);
|
---|
783 | h1.Fill(p[1]);
|
---|
784 | h2.Fill(p[2]);
|
---|
785 | if (polynom>1)
|
---|
786 | h3.Fill(p[5]);
|
---|
787 | h4b.Fill(func.GetChisquare());
|
---|
788 | //h5b.Fill(func.GetProb());
|
---|
789 |
|
---|
790 | // Implementing the integral as analytical function
|
---|
791 | // gives the same result in the order of 10e-5
|
---|
792 | // and it is not faster at all...
|
---|
793 | //const Bool_t ok = /*p[0]>=0 && /*p[0]<alpha0*2 &&*/ p[2]>1.75;// && p[2]<88.5;
|
---|
794 | /*
|
---|
795 | if (p[0]<-fabs(alpha0-p[3])*7 && p[2]<alphaw/3)
|
---|
796 | {
|
---|
797 | func.SetParameter(0, alpha0-p[3]);
|
---|
798 | cout << p[2] << " " << p[0] << " " << alpha0-p[3] << endl;
|
---|
799 | }
|
---|
800 | */
|
---|
801 |
|
---|
802 | // The fitted function returned units of
|
---|
803 | // counts bin binwidth. To get the correct number
|
---|
804 | // of events we must adapt the functions by dividing
|
---|
805 | // the result of the integration by the bin-width
|
---|
806 | const Double_t s = func.Integral(0, sigint)/w;
|
---|
807 |
|
---|
808 | func.SetParameter(0, 0);
|
---|
809 | func.SetParameter(2, 1);
|
---|
810 |
|
---|
811 | const Double_t b = func.Integral(0, sigint)/w;
|
---|
812 | const Double_t sig = Significance(s, b);
|
---|
813 |
|
---|
814 | // This is because a 3D histogram x and y are exchanged...
|
---|
815 | const Int_t n = hist->GetBin(ix, iy);
|
---|
816 | hists->SetBinContent(n, s-b);
|
---|
817 | histb->SetBinContent(n, b);
|
---|
818 |
|
---|
819 | hist->SetBinContent(n, sig);
|
---|
820 | if (sig!=0)
|
---|
821 | h6.Fill(sig);
|
---|
822 |
|
---|
823 | if (sig>maxs && ix*ix+iy*iy<nr*nr/9)
|
---|
824 | {
|
---|
825 | maxs = sig;
|
---|
826 | maxx = ix;
|
---|
827 | maxy = iy;
|
---|
828 | maxpar = p;
|
---|
829 | }
|
---|
830 | }
|
---|
831 |
|
---|
832 | *fLog << inf << "done." << endl;
|
---|
833 |
|
---|
834 | h0a.GetXaxis()->SetRangeUser(0, maxalpha0*1.5);
|
---|
835 | h0b.GetXaxis()->SetRangeUser(0, maxalpha0*1.5);
|
---|
836 |
|
---|
837 | //hists->SetMinimum(GetMinimumGT(*hists));
|
---|
838 | histb->SetMinimum(GetMinimumGT(*histb));
|
---|
839 |
|
---|
840 | clk.Stop();
|
---|
841 | clk.Print();
|
---|
842 |
|
---|
843 | TCanvas *c=new TCanvas;
|
---|
844 |
|
---|
845 | gStyle->SetPalette(1, 0);
|
---|
846 |
|
---|
847 | c->Divide(3,2, 0, 0);
|
---|
848 | c->cd(1);
|
---|
849 | gPad->SetBorderMode(0);
|
---|
850 | hists->Draw("colz");
|
---|
851 | hists->SetBit(kCanDelete);
|
---|
852 | c->cd(2);
|
---|
853 | gPad->SetBorderMode(0);
|
---|
854 | hist->Draw("colz");
|
---|
855 | hist->SetBit(kCanDelete);
|
---|
856 | c->cd(3);
|
---|
857 | gPad->SetBorderMode(0);
|
---|
858 | histb->Draw("colz");
|
---|
859 | histb->SetBit(kCanDelete);
|
---|
860 | c->cd(4);
|
---|
861 | gPad->Divide(1,3, 0, 0);
|
---|
862 | TVirtualPad *p=gPad;
|
---|
863 | p->SetBorderMode(0);
|
---|
864 | p->cd(1);
|
---|
865 | gPad->SetBorderMode(0);
|
---|
866 | h0b.DrawCopy();
|
---|
867 | h0a.DrawCopy("same");
|
---|
868 | p->cd(2);
|
---|
869 | gPad->SetBorderMode(0);
|
---|
870 | h3.DrawCopy();
|
---|
871 | p->cd(3);
|
---|
872 | gPad->SetBorderMode(0);
|
---|
873 | h2.DrawCopy();
|
---|
874 | c->cd(6);
|
---|
875 | gPad->Divide(1,2, 0, 0);
|
---|
876 | TVirtualPad *q=gPad;
|
---|
877 | q->SetBorderMode(0);
|
---|
878 | q->cd(1);
|
---|
879 | gPad->SetBorderMode(0);
|
---|
880 | gPad->SetBorderMode(0);
|
---|
881 | h4b.DrawCopy();
|
---|
882 | h4a.DrawCopy("same");
|
---|
883 | h6.DrawCopy("same");
|
---|
884 | q->cd(2);
|
---|
885 | gPad->SetBorderMode(0);
|
---|
886 | //h5b.DrawCopy();
|
---|
887 | //h5a.DrawCopy("same");
|
---|
888 | c->cd(5);
|
---|
889 | gPad->SetBorderMode(0);
|
---|
890 | if (maxx>0 && maxy>0)
|
---|
891 | {
|
---|
892 | const char *title = Form(" \\alpha for x=%.2f y=%.2f (\\sigma_{max}=%.1f) ",
|
---|
893 | hist->GetXaxis()->GetBinCenter(maxx),
|
---|
894 | hist->GetYaxis()->GetBinCenter(maxy), maxs);
|
---|
895 |
|
---|
896 | TH1 *result = fHist.ProjectionZ("AlphaFit", maxy, maxy, maxx, maxx);
|
---|
897 | result->SetDirectory(NULL);
|
---|
898 | result->SetNameTitle("Result \\alpha", title);
|
---|
899 | result->SetBit(kCanDelete);
|
---|
900 | result->SetXTitle("\\alpha [\\circ]");
|
---|
901 | result->SetYTitle("Counts");
|
---|
902 | result->Draw();
|
---|
903 |
|
---|
904 | TF1 f1("", func.GetExpFormula(), 0, 90);
|
---|
905 | TF1 f2("", func.GetExpFormula(), 0, 90);
|
---|
906 | f1.SetParameters(maxpar.GetArray());
|
---|
907 | f2.SetParameters(maxpar.GetArray());
|
---|
908 | f2.FixParameter(0, 0);
|
---|
909 | f2.FixParameter(1, 0);
|
---|
910 | f2.FixParameter(2, 1);
|
---|
911 | f1.SetLineColor(kGreen);
|
---|
912 | f2.SetLineColor(kRed);
|
---|
913 |
|
---|
914 | f2.DrawCopy("same");
|
---|
915 | f1.DrawCopy("same");
|
---|
916 |
|
---|
917 | TPaveText *leg = new TPaveText(0.35, 0.10, 0.90, 0.35, "brNDC");
|
---|
918 | leg->SetBorderSize(1);
|
---|
919 | leg->SetTextSize(0.04);
|
---|
920 | leg->AddText(0.5, 0.82, Form("A * exp(-(\\frac{x-\\mu}{\\sigma})^{2}/2) + pol%d", polynom))->SetTextAlign(22);
|
---|
921 | //leg->AddText(0.5, 0.82, "A * exp(-(\\frac{x-\\mu}{\\sigma})^{2}/2) + b*x^{2} + a")->SetTextAlign(22);
|
---|
922 | leg->AddLine(0, 0.65, 0, 0.65);
|
---|
923 | leg->AddText(0.06, 0.54, Form("A=%.2f", maxpar[0]))->SetTextAlign(11);
|
---|
924 | leg->AddText(0.06, 0.34, Form("\\sigma=%.2f", maxpar[2]))->SetTextAlign(11);
|
---|
925 | leg->AddText(0.06, 0.14, Form("\\mu=%.2f (fix)", maxpar[1]))->SetTextAlign(11);
|
---|
926 | leg->AddText(0.60, 0.54, Form("a=%.2f", maxpar[3]))->SetTextAlign(11);
|
---|
927 | leg->AddText(0.60, 0.34, Form("b=%.2f (fix)", maxpar[4]))->SetTextAlign(11);
|
---|
928 | if (polynom>1)
|
---|
929 | leg->AddText(0.60, 0.14, Form("c=%.2f", maxpar[5]))->SetTextAlign(11);
|
---|
930 | leg->SetBit(kCanDelete);
|
---|
931 | leg->Draw();
|
---|
932 |
|
---|
933 | q->cd(2);
|
---|
934 |
|
---|
935 | TGraph *g = new TGraph;
|
---|
936 | g->SetPoint(0, 0, 0);
|
---|
937 |
|
---|
938 | Int_t max=0;
|
---|
939 | Float_t maxsig=0;
|
---|
940 | for (int i=1; i<89; i++)
|
---|
941 | {
|
---|
942 | const Double_t s = f1.Integral(0, (float)i)/w;
|
---|
943 | const Double_t b = f2.Integral(0, (float)i)/w;
|
---|
944 |
|
---|
945 | const Double_t sig = Significance(s, b);
|
---|
946 |
|
---|
947 | g->SetPoint(g->GetN(), i, sig);
|
---|
948 |
|
---|
949 | if (sig>maxsig)
|
---|
950 | {
|
---|
951 | max = i;
|
---|
952 | maxsig = sig;
|
---|
953 | }
|
---|
954 | }
|
---|
955 |
|
---|
956 | g->SetNameTitle("SigVs\\alpha", "Significance vs \\alpha");
|
---|
957 | g->GetHistogram()->SetXTitle("\\alpha_{0} [\\circ]");
|
---|
958 | g->GetHistogram()->SetYTitle("Significance");
|
---|
959 | g->SetBit(kCanDelete);
|
---|
960 | g->Draw("AP");
|
---|
961 |
|
---|
962 | leg = new TPaveText(0.35, 0.10, 0.90, 0.25, "brNDC");
|
---|
963 | leg->SetBorderSize(1);
|
---|
964 | leg->SetTextSize(0.1);
|
---|
965 | leg->AddText(Form("\\sigma_{max}=%.1f at \\alpha_{max}=%d\\circ", maxsig, max));
|
---|
966 | leg->SetBit(kCanDelete);
|
---|
967 | leg->Draw();
|
---|
968 | }
|
---|
969 | }
|
---|