update the Check_Simulation.C
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364530f73c
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@ -25,4 +25,4 @@ Cleopatra/IsotopeShort
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Cleopatra/PlotSimulation
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Cleopatra/PlotTGraphTObjArray
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Cleopatra/SimAlpha
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Cleopatra/Transfer
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Cleopatra/SimTransfer
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@ -95,7 +95,9 @@ public:
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bool LoadDetectorGeo(TString fileName, bool verbose = true);
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bool LoadDetectorGeo(TMacro * macro, bool verbose = true);
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void Print( bool printAll = true) const;
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void PrintWithoutArray() ;
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void Print( bool printAll = true) ;
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private:
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@ -203,24 +205,14 @@ inline bool DetGeo::LoadDetectorGeo(TMacro * macro, bool verbose){
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}
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inline void DetGeo::Print(bool printAll) const{
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inline void DetGeo::PrintWithoutArray(){
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printf("=====================================================\n");
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printf(" B-field: %8.2f T, Theta : %6.2f deg \n", Bfield, BfieldTheta);
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if( BfieldTheta != 0.0 ) {
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printf(" +---- field angle != 0 is not supported!!! \n");
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}
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printf(" B-field: %8.2f T, %s\n", Bfield, Bfield > 0 ? "out of plan" : "into plan");
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printf(" B-field Theta : %6.2f deg \n", BfieldTheta);
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if( BfieldTheta != 0.0 ) printf(" +---- field angle != 0 is not supported!!! \n");
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printf(" Recoil detector pos: %8.2f mm, radius: %6.2f - %6.2f mm \n", recoilPos, recoilInnerRadius, recoilOuterRadius);
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for( int i = 0; i < 2 ; i++){
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if( printAll || array[i].enable ) {
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printf("-----------------------------------%d-th Detector Position \n", i);
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array[i].PrintArray();
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}
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}
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if( elumPos1 != 0 || elumPos2 != 0 || recoilPos1 != 0 || recoilPos2 != 0){
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printf("=================================== Auxillary/Imaginary Detectors\n");
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}
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@ -229,6 +221,21 @@ inline void DetGeo::Print(bool printAll) const{
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if( recoilPos1 != 0 ) printf(" Recoil 1 pos.: %f mm \n", recoilPos1);
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if( recoilPos2 != 0 ) printf(" Recoil 2 pos.: %f mm \n", recoilPos2);
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printf("=====================================================\n");
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}
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inline void DetGeo::Print(bool printAll){
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PrintWithoutArray();
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for( int i = 0; i < 2 ; i++){
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if( printAll || array[i].enable ) {
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printf("-----------------------------------%d-th Detector Position \n", i);
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array[i].PrintArray();
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}
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}
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printf("=====================================================\n");
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}
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@ -114,7 +114,7 @@ public:
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bool LoadReactionConfig(TString fileName);
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bool LoadReactionConfig(TMacro * macro);
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void Print() const;
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void Print(int ID = -1, bool withEx = true) const;
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private:
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@ -237,7 +237,7 @@ inline bool ReactionConfig::LoadReactionConfig(TMacro * macro){
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return true;
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}
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inline void ReactionConfig::Print() const{
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inline void ReactionConfig::Print(int ID, bool withEx) const{
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printf("=====================================================\n");
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@ -261,8 +261,10 @@ inline void ReactionConfig::Print() const{
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for( int i = 0; i < 2; i ++ ){
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printf("------------------------------ Recoil-%d\n", i);
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recoil[i].Print();
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exList[i].Print();
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if( ID == i || ID < 0 ){
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recoil[i].Print();
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if( withEx ) exList[i].Print();
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}
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}
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File diff suppressed because it is too large
Load Diff
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@ -45,8 +45,7 @@ void Transfer(
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TString ptolemyRoot = "DWBA.root",
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TString saveFileName = "transfer.root"){
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//############################################# Set Reaction
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//*############################################# Set Reaction
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TransferReaction transfer;
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HELIOS helios;
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Decay decay;
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@ -65,7 +64,7 @@ void Transfer(
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printf("\e[32m#################################### Reaction & HELIOS configuration\e[0m\n");
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transfer.PrintReaction();
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transfer.PrintReaction(false);
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if(transfer.GetRecoil().isDecay) {
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decay.SetMotherDaugther(transfer.GetRecoil());
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@ -118,19 +117,9 @@ void Transfer(
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// msB.LoadStoppingPower(reactConfig.recoilHeavyStoppingPowerFile);
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// }
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//*############################################# Decay of particle-B
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// Decay decay[2];
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// if(reactConfig.isDecay) {
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// printf("\e[32m#################################### Decay\e[0m\n");
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// decay.SetMotherDaugther(reactConfig.recoilHeavyA,
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// reactConfig.recoilHeavyZ,
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// reactConfig.heavyDecayA,
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// reactConfig.heavyDecayZ);
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// }
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ExcitedEnergies exList = transfer.GetRectionConfig().exList[ID];
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//############################################# Load DWBAroot for thetaCM distribution
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//*############################################# Load DWBAroot for thetaCM distribution
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printf("\e[32m#################################### Load DWBA input : %s \e[0m\n", ptolemyRoot.Data());
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TF1 * dist = NULL;
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TFile * distFile = new TFile(ptolemyRoot, "read");
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@ -178,7 +167,7 @@ void Transfer(
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}
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}
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//############################################# build tree
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//*############################################# build tree
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printf("\e[32m#################################### building Tree in %s\e[0m\n", saveFileName.Data());
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TFile * saveFile = new TFile(saveFileName, "recreate");
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TTree * tree = new TTree("tree", "tree");
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@ -192,6 +181,9 @@ void Transfer(
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if( distList != NULL ) distList->Write("DWBA", 1);
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if( dwbaExList != NULL ) dwbaExList->Write("DWBA_ExList", 1);
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TMacro idMacro;
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idMacro.AddLine(Form("%d", ID));
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idMacro.Write("detGeoID");
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TMacro hitMeaning;
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hitMeaning.AddLine("======================= meaning of Hit\n");
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@ -421,7 +413,7 @@ void Transfer(
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double theta = reactConfig.beamTheta;
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double phi = 0.0;
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//====================================================== calculate event
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//*====================================================== calculate event
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int count = 0;
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for( int i = 0; i < numEvent; i++){
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bool redoFlag = true;
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@ -497,7 +489,6 @@ void Transfer(
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int decayID = 0;
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if( recoil.isDecay){
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//decayID = decay.CalDecay(PB, Ex, 0, phiCM + TMath::Pi()/2.); // decay to ground state
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decayID = decay.CalDecay(PB, Ex, 0, phiCM + TMath::Pi()/2); // decay to ground state
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if( decayID == 1 ){
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PB = decay.GetDaugther_D();
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@ -661,3 +652,58 @@ void Transfer(
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return;
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}
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int main (int argc, char *argv[]) {
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printf("=================================================================\n");
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printf("========== Simulate Transfer reaction in HELIOS ==========\n");
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printf("=================================================================\n");
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if(argc == 2 || argc > 7) {
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printf("Usage: ./Transfer [1] [2] [3] [4] [5] [6]\n");
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printf(" default file name \n");
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printf(" [1] reactionConfig.txt (input) reaction Setting \n");
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printf(" [2] detectorGeo.txt (input) detector Setting \n");
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printf(" [3] ID (input) detector & reaction ID (default = 0 ) \n");
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printf(" [4] DWBA.root (input) thetaCM distribution from DWBA \n");
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printf(" [5] transfer.root (output) rootFile name for output \n");
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printf(" [6] plot (input) will it plot stuffs [1/0] \n");
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printf("------------------------------------------------------\n");
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return 0 ;
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}
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std::string basicConfig = "reactionConfig.txt";
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std::string heliosDetGeoFile = "detectorGeo.txt";
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int ID = 0;
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TString ptolemyRoot = "DWBA.root"; // when no file, use isotropic distribution of thetaCM
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TString saveFileName = "transfer.root";
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bool isPlot = false;
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if( argc >= 2) basicConfig = argv[1];
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if( argc >= 3) heliosDetGeoFile = argv[2];
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if( argc >= 4) ID = atoi(argv[3]);
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if( argc >= 5) ptolemyRoot = argv[4];
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if( argc >= 6) saveFileName = argv[5];
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if( argc >= 7) isPlot = atoi(argv[7]);
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Transfer( basicConfig, heliosDetGeoFile, ID, ptolemyRoot, saveFileName);
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//run Armory/Check_Simulation
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if( isPlot ){
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ifstream file_in;
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file_in.open("../Cleopatra/Check_Simulation.C", ios::in);
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if( file_in){
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printf("---- running ../Cleopatra/Check_Simulation.C on %s \n", saveFileName.Data());
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TString cmd;
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cmd.Form("root -l '../Cleopatra/Check_Simulation.C(\"%s\")'", saveFileName.Data());
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system(cmd.Data());
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}else{
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printf("cannot find ../Cleopatra/Check_Simulation.C \n");
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}
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}
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}
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@ -12,7 +12,7 @@
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#include <RQ_OBJECT.h>
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#include "../Cleopatra/Transfer.h"
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#include "../Cleopatra/SimTransfer.C"
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#include "../Cleopatra/InFileCreator.h"
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#include "../Cleopatra/ExtractXSec.h"
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#include "../Cleopatra/PlotTGraphTObjArray.h"
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@ -58,7 +58,6 @@ private:
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TGComboBox * extractFlag;
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TGTextEntry * txtName ;
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TGTextEntry * txtEx ;
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@ -1,72 +0,0 @@
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/***********************************************************************
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*
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* This is Transfer.C for simulation of transfer reaction.
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*
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* -----------------------------------------------------
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* This program will call the root library and compile in g++
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* compilation:
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* g++ Transfer.C -o Transfer `root-config --cflags --glibs`
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*
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* ------------------------------------------------------
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* created by Ryan (Tsz Leung) Tang, Feb-4, 2019
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* email: goluckyryan@gmail.com
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* ********************************************************************/
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#include <fstream>
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#include <stdlib.h>
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#include "Transfer.h"
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using namespace std;
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int main (int argc, char *argv[]) {
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printf("=================================================================\n");
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printf("========== Simulate Transfer reaction in HELIOS ==========\n");
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printf("=================================================================\n");
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if(argc == 2 || argc > 7) {
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printf("Usage: ./Transfer [1] [2] [3] [4] [5] [6]\n");
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printf(" default file name \n");
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printf(" [1] reactionConfig.txt (input) reaction Setting \n");
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printf(" [2] detectorGeo.txt (input) detector Setting \n");
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printf(" [3] ID (input) detector & reaction ID (default = 0 ) \n");
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printf(" [4] DWBA.root (input) thetaCM distribution from DWBA \n");
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printf(" [5] transfer.root (output) rootFile name for output \n");
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printf(" [6] plot (input) will it plot stuffs [1/0] \n");
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printf("------------------------------------------------------\n");
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return 0 ;
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}
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string basicConfig = "reactionConfig.txt";
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string heliosDetGeoFile = "detectorGeo.txt";
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int ID = 0;
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TString ptolemyRoot = "DWBA.root"; // when no file, use isotropic distribution of thetaCM
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TString saveFileName = "transfer.root";
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bool isPlot = false;
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if( argc >= 2) basicConfig = argv[1];
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if( argc >= 3) heliosDetGeoFile = argv[2];
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if( argc >= 4) ID = atoi(argv[3]);
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if( argc >= 5) ptolemyRoot = argv[4];
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if( argc >= 6) saveFileName = argv[5];
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if( argc >= 7) isPlot = atoi(argv[7]);
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Transfer( basicConfig, heliosDetGeoFile, ID, ptolemyRoot, saveFileName);
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//run Armory/Check_Simulation
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if( isPlot ){
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ifstream file_in;
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file_in.open("../Cleopatra/Check_Simulation.C", ios::in);
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if( file_in){
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printf("---- running ../Cleopatra/Check_Simulation.C on %s \n", saveFileName.Data());
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TString cmd;
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cmd.Form("root -l '../Cleopatra/Check_Simulation.C(\"%s\")'", saveFileName.Data());
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system(cmd.Data());
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}else{
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printf("cannot find ../Cleopatra/Check_Simulation.C \n");
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}
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}
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}
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@ -1,6 +1,6 @@
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CC=g++
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ALL = Isotope InFileCreator ExtractXSec ExtractXSecFromText PlotTGraphTObjArray Cleopatra FindThetaCM Transfer SimAlpha
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ALL = Isotope InFileCreator ExtractXSec ExtractXSecFromText PlotTGraphTObjArray Cleopatra FindThetaCM SimTransfer SimAlpha
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all: $(ALL)
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@ -25,11 +25,11 @@ Cleopatra: Cleopatra.C
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FindThetaCM: FindThetaCM.C FindThetaCM.h ../Cleopatra/ClassTransfer.h ../Cleopatra/ClassHelios.h ../Cleopatra/ClassIsotope.h ../Cleopatra/constant.h
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$(CC) FindThetaCM.C -o FindThetaCM `root-config --cflags --glibs`
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Transfer: Transfer.C Transfer.h ../Cleopatra/ClassTransfer.h ../Cleopatra/ClassHelios.h ../Cleopatra/ClassIsotope.h ../Cleopatra/constant.h
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$(CC) Transfer.C -o Transfer `root-config --cflags --glibs`
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SimTransfer: SimTransfer.C ../Cleopatra/ClassTransfer.h ../Cleopatra/ClassHelios.h ../Cleopatra/ClassIsotope.h ../Cleopatra/constant.h
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$(CC) SimTransfer.C -o SimTransfer `root-config --cflags --glibs`
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SimAlpha: alpha.C ../Cleopatra/ClassHelios.h
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$(CC) alpha.C -o SimAlpha `root-config --cflags --glibs`
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SimAlpha: SimAlpha.C ../Cleopatra/ClassHelios.h
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$(CC) SimAlpha.C -o SimAlpha `root-config --cflags --glibs`
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clean:
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/bin/rm -f $(ALL)
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