| [150] | 1 | //std
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 | 2 | #include <stdio.h>
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 | 3 | #include <stdlib.h>
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 | 4 | #include <math.h>
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 | 5 | #include <string.h>
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 | 6 | #include <cmath>
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 | 7 | #include <fstream>
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 | 8 | #include <iostream>
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 | 9 | 
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 | 10 | //Globes
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 | 11 | #include <globes/globes.h>
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 | 12 | 
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 | 13 | // AIDA :
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 | 14 | #include <AIDA/IAnalysisFactory.h>
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 | 15 | #include <AIDA/ITreeFactory.h>
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 | 16 | #include <AIDA/IHistogramFactory.h>
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 | 17 | #include <AIDA/ITree.h>
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 | 18 | #include <AIDA/ITupleFactory.h>
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 | 19 | #include <AIDA/ITuple.h>
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 | 20 | 
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 | 21 | /*
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 | 22 |   CP discovery potential (Test delta = 0, and delta = pi)
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 | 23 |   Xi2 as the function of the true delta and the true theta_13 to test if the 
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 | 24 |   experiment may be fit by CP conserving oscillations 
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 | 25 |   the true values are used to build the referenced experiments
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 | 26 |   use chi2Delta to marginalized over all parameters except delta
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 | 27 |   
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 | 28 |   NO degeneracy included
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 | 29 |   29/6/05 JEC clean the code
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 | 30 |  */
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 | 31 | 
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 | 32 | //FIXME: transfert the #defined variables to Data Cards
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 | 33 | #define TH12 ( 0.5 * asin(sqrt(0.82)) )
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 | 34 | #define TH23 ( M_PI/4.0 )
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 | 35 | 
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 | 36 | #define DELTA_0   0.0
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 | 37 | #define DELTA_PI  M_PI 
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 | 38 | 
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 | 39 | #define DMQ21 8.2e-5
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 | 40 | #define DMQ31 2.5e-3
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 | 41 | 
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 | 42 | 
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 | 43 | /**************************************/
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 | 44 | /*           main                     */
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 | 45 | /**************************************/
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 | 46 | 
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 | 47 | int main(int argc, char *argv[])
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 | 48 | {
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 | 49 |   //init AIDA for Histo/Tuple
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 | 50 |   AIDA::IAnalysisFactory* aida = AIDA_createAnalysisFactory();
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 | 51 |   if(!aida) {
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 | 52 |     std::cerr  << " AIDA not found." << std::endl;
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 | 53 |     return 0;
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 | 54 |   }
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 | 55 | 
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 | 56 |   //ROOT tree :
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 | 57 |   AIDA::ITreeFactory* treeFactory = aida->createTreeFactory();
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 | 58 |   std::string opts = "export=root";
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 | 59 |   AIDA::ITree* fTree = 
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 | 60 |     treeFactory->create("SPLCPDiscovery.root","root",false,true,opts);
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 | 61 |   delete treeFactory;
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 | 62 | 
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 | 63 |  //Booking Tuple
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 | 64 |   AIDA::ITupleFactory* tf = aida->createTupleFactory(*fTree);
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 | 65 | 
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 | 66 |   int NumberOfColumn = 7;
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 | 67 |   std::vector<std::string> column(NumberOfColumn);
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 | 68 |   const char* c_column[] = {"theta12", "theta13", "theta23", 
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 | 69 |                             "deltaCP", "dm21", "dm31", 
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 | 70 |                             "chi2"};
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 | 71 |   std::vector<std::string> coltype(NumberOfColumn);
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 | 72 |   const char* c_coltype[] = {"double","double","double",
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 | 73 |                              "double","double","double",
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 | 74 |                              "double"};
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 | 75 |   for (int icol = 0; icol<NumberOfColumn; ++icol) {
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 | 76 |     column[icol]  = c_column[icol];
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 | 77 |     coltype[icol] = c_coltype[icol];
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 | 78 |   }
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 | 79 | 
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 | 80 |   AIDA::ITuple* myTuple = 
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 | 81 |     tf->create("SplGlb","CP violation discovery",column,coltype);
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 | 82 |   
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 | 83 |  
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 | 84 |   //Init Globes
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 | 85 |   glbInit(argv[0]);
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 | 86 |   glbInitExperiment("../data/SPL.glb",
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 | 87 |                     &glb_experiment_list[0],
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 | 88 |                     &glb_num_of_exps);
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 | 89 | 
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 | 90 |   // input Prior errors: 
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 | 91 |   // 5% on Solar parameters, the atmospheric parameters are 
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 | 92 |   // better determined by disappearence channels here 30% to drive the
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 | 93 |   // minimizer
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 | 94 |   glb_params input_errors = glbAllocParams();
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 | 95 |   glbDefineParams(input_errors, 
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 | 96 |                   TH12*0.05, 0., TH23*0.30, 0., 
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 | 97 |                   DMQ21*0.05, fabs(DMQ31)*0.30);
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 | 98 |   glbSetDensityParams(input_errors, 0.05, GLB_ALL);
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 | 99 |   glbSetInputErrors(input_errors);
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 | 100 | 
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 | 101 |   
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 | 102 |   
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 | 103 |   //change ND=31 [0,PI/2] to 121 [0,2PI] scan 
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 | 104 | #define ND  121   
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 | 105 | #define NTH 41
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 | 106 | #define LOG10MIN -4.0
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 | 107 | #define LOG10MAX -1.0
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 | 108 | 
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 | 109 |   std::cout << "Start to loop...." << std::endl;
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 | 110 | 
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 | 111 | 
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 | 112 |   double res,res0,resPi;
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 | 113 |   double fit_theta12, fit_theta13,fit_theta23,fit_deltaCP,fit_dmSol,fit_dmAtm;
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 | 114 |   double delta, log10s2, sq2th, th;
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 | 115 | 
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 | 116 | 
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 | 117 |   glb_params true_values = glbAllocParams();
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 | 118 |   glb_params start_values = glbAllocParams();
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 | 119 |   glb_params test_values = glbAllocParams();
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 | 120 |     
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 | 121 |   for(int k = 0; k < NTH; k++) {      
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 | 122 |           
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 | 123 |     log10s2 = LOG10MIN + (LOG10MAX-LOG10MIN) * double(k) / (NTH-1);
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 | 124 |     sq2th = pow(10.,log10s2);
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 | 125 |     th = 0.5 * asin(sqrt(sq2th));
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 | 126 |     
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 | 127 |     for(int j = 0; j < ND; j++) {
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 | 128 |       //scan de 0 a +Pi pour delta_CP
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 | 129 |       delta =  2. * M_PI * double(j) / (ND-1);
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 | 130 |       
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 | 131 |       // true values (reference for future Chi2 computations) 
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 | 132 |       glbDefineParams(true_values, TH12, th, TH23, delta, DMQ21, DMQ31);
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 | 133 |       
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 | 134 |       glbSetOscillationParameters(true_values);  
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 | 135 |       glbSetRates();
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 | 136 |       
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 | 137 |       // set Starting Values
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 | 138 |       glbDefineParams(start_values, TH12, th, TH23, delta, DMQ21, DMQ31);
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 | 139 |       glbSetStartingValues(start_values);
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 | 140 |       
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 | 141 |       // init test values with current TRUE Theta13 but Fixed DELTA=0
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 | 142 |       glbDefineParams(test_values, TH12, th, TH23, DELTA_0, DMQ21, DMQ31);
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 | 143 | 
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 | 144 |       //check whether the data can be fitted with the CP conserving values
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 | 145 |       res0 = glbChiDelta(test_values,NULL,GLB_ALL);
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 | 146 | 
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 | 147 |       // init test values with current TRUE Theta13 but Fixed DELTA=PI
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 | 148 |       glbDefineParams(test_values, TH12, th, TH23, DELTA_PI, DMQ21, DMQ31);
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 | 149 | 
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 | 150 |       //check whether the data can be fitted with the CP conserving values
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 | 151 |       resPi = glbChiDelta(test_values,NULL,GLB_ALL);
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 | 152 | 
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 | 153 | 
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 | 154 |       //store the true_values theta13,delta_CP, the other variables are there
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 | 155 |       //just for compatibility for the Tuple definition
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 | 156 |       fit_theta12 = glbGetOscParams(true_values, GLB_THETA_12);
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 | 157 |       fit_theta13 = glbGetOscParams(true_values, GLB_THETA_13);
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 | 158 |       fit_theta23 = glbGetOscParams(true_values, GLB_THETA_23);
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 | 159 |       fit_deltaCP = glbGetOscParams(true_values, GLB_DELTA_CP);
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 | 160 |       fit_dmSol   = glbGetOscParams(true_values, GLB_DM_SOL);
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 | 161 |       fit_dmAtm   = glbGetOscParams(true_values, GLB_DM_ATM);
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 | 162 | 
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 | 163 |       //Get the Minimum Chi2 between the 2 hypothesis Delta=0 Delta=PI
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 | 164 |       res = res0;
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 | 165 |       if (resPi < res0) res = resPi;
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 | 166 | 
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 | 167 | //       std::cout << "Theta_12(rad) " <<  fit_theta12 << " "
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 | 168 | //              << "Theta_13(rad) " <<  fit_theta13 << " "
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 | 169 | //                      << "Theta_23(deg) " <<  fit_theta23*180./M_PI << " "
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 | 170 | //                      << "Delta_CP(deg) " <<  fit_deltaCP*180./M_PI << " "
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 | 171 | //                      << "DM_21    " <<  fit_dmSol   << " "
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 | 172 | //                      << "DM_31    " <<  fit_dmAtm   << " "
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 | 173 | //                      << "Chi2 (fin) " << res
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 | 174 | //                      << std::endl;       
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 | 175 | 
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 | 176 |       //Store in the Tuple
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 | 177 |       myTuple->fill(0,fit_theta12);
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 | 178 |       myTuple->fill(1,fit_theta13);
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 | 179 |       myTuple->fill(2,fit_theta23);
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 | 180 |       myTuple->fill(3,fit_deltaCP);
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 | 181 |       myTuple->fill(4,fit_dmSol);
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 | 182 |       myTuple->fill(5,fit_dmAtm);
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 | 183 |       myTuple->fill(6,res);
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 | 184 |       myTuple->addRow();
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 | 185 |       
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 | 186 |       
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 | 187 |     }//Loop on Theta13
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 | 188 |   }//Loop on DeltaCP
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 | 189 |   
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 | 190 |   //free GLoBES arrays
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 | 191 |   glbFreeParams(true_values);
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 | 192 |   glbFreeParams(test_values);
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 | 193 |   glbFreeParams(start_values);
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 | 194 | 
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 | 195 | 
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 | 196 |   //save Tuple
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 | 197 |   fTree->commit();
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 | 198 | 
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 | 199 |   //Clean Tuple management
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 | 200 |   delete fTree;
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 | 201 |   delete aida;
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 | 202 | 
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 | 203 |   return 0;
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 | 204 | }
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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 | 
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