modified: Analyzer.C
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Analyzer.C
104
Analyzer.C
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@ -28,7 +28,7 @@ TH2F * hqqqVpcIndex;
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TH2F * hqqqVpcE;
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TH2F * hqqqVpcE;
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TH2F * hsx3VpcE;
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TH2F * hsx3VpcE;
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TH2F * hanVScatsum;
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TH2F * hanVScatsum;
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TH1F * hAnodeHits;
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TH2F * hAnodeHits;
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int padID = 0;
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int padID = 0;
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@ -69,7 +69,7 @@ void Analyzer::Begin(TTree * /*tree*/){
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hsx3VpcE->SetNdivisions( -12, "y");
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hsx3VpcE->SetNdivisions( -12, "y");
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hZProj = new TH1F("hZProj", "Z Projection", 200, -600, 600);
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hZProj = new TH1F("hZProj", "Z Projection", 200, -600, 600);
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hAnodeHits = new TH1F("hAnodeHits", "Anode Hits", 24, 0, 23);
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hAnodeHits = new TH2F("hAnodeHits", "Anode vs Anode Energy, Anode ID; Anode E", 24,0 , 23, 400, 0 , 16000);
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hanVScatsum = new TH2F("hanVScatsum", "Anode vs Cathode Sum; Anode E; Cathode E", 400,0 , 10000, 400, 0 , 16000);
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hanVScatsum = new TH2F("hanVScatsum", "Anode vs Cathode Sum; Anode E; Cathode E", 400,0 , 10000, 400, 0 , 16000);
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@ -260,69 +260,65 @@ Bool_t Analyzer::Process(Long64_t entry){
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}
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}
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// //======================= PC
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// //======================= PC
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ID.clear();
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int counter=0;
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std::vector<std::pair<int, double>> E;
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std::vector<std::pair<int, double>> anodeHits;
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std::vector<std::pair<int, double>> anodeHits;
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std::vector<std::pair<int, double>> cathodeHits;
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std::vector<std::pair<int, double>> cathodeHits;
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int aID = 0;
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int cID = 0;
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E.clear();
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float aE = 0;
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for( int i = 0; i < pc.multi; i ++){
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float cE = 0;
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if( pc.e[i] > 100 ) ID.push_back(std::pair<int, int>(pc.id[i], i));
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// Define the excluded SX3 and QQQ channels
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if( pc.e[i] > 100 ) E.push_back(std::pair<int, double>(pc.index[i], pc.e[i]));
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std::unordered_set<int> excludeSX3 = {34, 35, 36, 37, 61, 62, 67, 73, 74, 75, 76, 77, 78, 79, 80, 93, 97, 100, 103, 108, 109, 110, 111, 112};
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std::unordered_set<int> excludeQQQ = {0, 17, 109, 110, 111, 112, 113, 119, 127, 128};
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for (int i = 0; i < pc.multi; i++) {
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if (pc.e[i] > 20) { // Reduced threshold for debugging
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hpcIndexVE->Fill( pc.index[i], pc.e[i] );
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for (int j = 0; j < sx3.multi; j++) {
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if (excludeSX3.find(sx3.index[j]) == excludeSX3.end()) {
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for( int j = i+1; j < pc.multi; j++){
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hpcIndexVE->Fill(pc.index[i], pc.e[i]);
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hpcCoin->Fill( pc.index[i], pc.index[j]);
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}
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}
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if (pc.e[i] > 20) {
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// for( size_t i = 0; i < E.size(); i++) printf("%zu | %d %d \n", i, E[i].first, E[i].second );
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if (pc.index[i] < 24) {
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anodeHits.push_back(std::make_pair(pc.index[i], pc.e[i]));
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} else if (pc.index[i] >= 24) {
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cathodeHits.push_back(std::make_pair(pc.index[i], pc.e[i]));
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}
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}
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if( E.size()>=3 ){
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for (int k = i + 1; k < pc.multi; k++) {
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hpcCoin->Fill(pc.index[i], pc.index[k]);
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int aID = 0;
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}
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int cID = 0;
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float aE = 0;
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float cE = 0;
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for( int i = 0; i < pc.multi; i ++){
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for (int j=0;j<sx3.multi;j++){
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if(sx3.index[j]==50/*excludeSX3.find(sx3.index[i]) == excludeSX3.end() && excludeQQQ.find(qqq.index[i]) == excludeQQQ.end()*/){
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if (pc.index[i] < 24 ){
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anodeHits.push_back(std::pair<int, double>(pc.index[i], pc.e[i]));
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} else if (pc.index[i] >= 24){
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cathodeHits.push_back(std::pair<int, double>(pc.index[i], pc.e[i]));
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}
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}
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}
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}
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}
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// hpcIndexVE->Fill( pc.index[i], pc.e[i] );
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if (!anodeHits.empty() && !cathodeHits.empty()) {
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float aESum = 0;
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float cESum = 0;
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if (anodeHits.size()>=1 && cathodeHits.size() >= 1){
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for (const auto& anode : anodeHits) {
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for (const auto& anode : anodeHits) {
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aESum += anode.second;
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for (const auto& cathode : cathodeHits) {
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hAnodeHits->Fill(anode.first, anode.second);
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int aID = anode.first;
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}
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int cID = cathode.first;
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float aE = anode.second;
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for (const auto& cathode : cathodeHits) {
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float cE = cathode.second;
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cESum += cathode.second;
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// signed int aT = 0, cT = 0;
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}
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// aT = pc.t[i];
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// Debugging output
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// signed int psiT = aT - qqqT;
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printf("Filling histogram: aESum = %f, cESum = %f\n", aESum, cESum);
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// signed int pT = aT - cT;
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hAnodeHits->Fill(aID);
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hanVScatsum->Fill(aESum, cESum);
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}
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}
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}
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}
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}
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anodeHits.clear();
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hanVScatsum->Fill(aE,cE);
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cathodeHits.clear();
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}
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}
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// hanVScatsum->Fill(aE,cE);
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if( HitNonZero){
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if( HitNonZero){
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@ -331,7 +327,7 @@ Bool_t Analyzer::Process(Long64_t entry){
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}
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}
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}
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@ -404,7 +400,7 @@ void Analyzer::Terminate(){
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canvas->cd(padID); canvas->cd(padID)->SetGrid(1);
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canvas->cd(padID); canvas->cd(padID)->SetGrid(1);
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// hZProj->Draw();
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// hZProj->Draw();
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hanVScatsum->Draw("colz");
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// hanVScatsum->Draw("colz");
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// hAnodeHits->Draw();
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hAnodeHits->Draw("colz");
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}
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}
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