E vs dE plotter
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fe112a6004
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@ -46,10 +46,10 @@ void aarootscript(int argument = 0) {
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std::cout << "Zero Count: " << zeroCount << std::endl;
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std::cout << "Making histograms..." << std::endl;
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//std::cout << "Making histograms..." << std::endl;
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gErrorIgnoreLevel = 2001;
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gROOT->ProcessLine(".x histcomp.C");
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//gROOT->ProcessLine(".x histcomp.C");
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std::cout << "=========================================\n";
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@ -68,7 +68,59 @@ void aarootscript(int argument = 0) {
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std::cout << "Tree2 not found!" << std::endl;
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}
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}
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std::cout << "Creating Tb vs dEb plot..." << std::endl;
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// Readers for both trees
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TTreeReader r1(tree1);
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TTreeReader r2(tree2);
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TTreeReaderValue<double> Tb_val(r1, "Tb");
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TTreeReaderValue<double> dEb_val(r2, "dEb");
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std::vector<double> x; // Tb (tree1)
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std::vector<double> y; // dEb (tree2)
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// Loop over both trees simultaneously
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while (r1.Next() && r2.Next()) {
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x.push_back(*Tb_val);
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y.push_back(*dEb_val);
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}
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std::cout << "x length: " << x.size() << ", y length: " << y.size() << std::endl;
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#include <fstream>
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std::ofstream outfile("Tb_dEb_data.txt");
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if (!outfile.is_open()) {
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std::cerr << "Error: Could not open output file!" << std::endl;
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return;
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}
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for (size_t i = 0; i < x.size(); i++) {
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outfile << x[i] << " " << y[i] << "\n";
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}
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outfile.close();
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std::cout << "Data written to Tb_dEb_data.txt" << std::endl;
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/*
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// Create graph
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TGraph *gr = new TGraph(x.size(), &x[0], &y[0]);
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gr->SetTitle("Tb (tree1) vs dEb (tree2);Tb;dEb");
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gr->SetMarkerStyle(20);
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// Draw
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TCanvas *c1 = new TCanvas("c1", "Tb vs dEb", 800, 600);
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gr->Draw("AP");
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c1->Update();
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c1->SaveAs("Tb_vs_dEb.png");
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std::cout << "Plot saved as Tb_vs_dEb.pdf" << std::endl;
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std::cout << "\n\n\n";
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delete c1;
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delete gr;*/
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}
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@ -129,9 +129,11 @@ int main(int argc, char **argv){
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// outgoing particles in lab frame (light/heavy)
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double thetab, phib, Tb;
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double thetaB, phiB, TB;
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double dEb; // energy loss variable for light particle, will be updated after loss calculation
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tree->Branch("thetab", &thetab, "thetab/D");
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tree->Branch("phib", &phib, "phib/D");
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tree->Branch("Tb", &Tb, "Tb/D");
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tree->Branch("dEb", &dEb, "dEb/D"); // for energy loss calculation, will be updated with loss
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tree->Branch("thetaB", &thetaB, "thetaB/D");
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tree->Branch("phiB", &phiB, "phiB/D");
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tree->Branch("TB", &TB, "TB/D");
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@ -297,6 +299,7 @@ int main(int argc, char **argv){
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rePhi1 = pw->GetTrackPhi() * TMath::RadToDeg();
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z0 = pw->GetZ0();
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dEb = 0; // initialize energy loss variable for tree storage, will be updated after loss calculation
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tree->Fill();
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//Energy loss
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double dl = (hitPos - vertex).Mag() / 10; // path length in cm (positions in mm)
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@ -325,6 +328,7 @@ int main(int argc, char **argv){
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break;
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}
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}
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dEb = tb_temp - Tb; // total energy loss for this event
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// fill tree2 with energy loss adjusted data
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if (Tb != 0) {
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tree2->Fill();
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@ -350,6 +354,7 @@ int main(int argc, char **argv){
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reTheta1 = TMath::QuietNaN();
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rePhi1 = TMath::QuietNaN();
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z0 = TMath::QuietNaN();
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dEb = TMath::QuietNaN(); // initialize energy loss variable for no hit case
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//Tb = -12354567; // mark kinetic energy as invalid for no hit case
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// fill tree with original data (no energy loss for these events)
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//tree->Fill();
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