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JPlotPDF_L1.cc File Reference
#include <string>
#include <iostream>
#include <fstream>
#include <iomanip>
#include <vector>
#include "TROOT.h"
#include "TFile.h"
#include "TH1D.h"
#include "JTools/JFunction1D_t.hh"
#include "JTools/JFunctionalMap_t.hh"
#include "JTools/JAbstractHistogram.hh"
#include "JPhysics/JPDFTransformer.hh"
#include "JPhysics/JPDFTable.hh"
#include "JPhysics/JPDFTypes.hh"
#include "JPhysics/JPDFToolkit.hh"
#include "JGeometry3D/JAngle3D.hh"
#include "JGeometry3D/JRotation3D.hh"
#include "JDetector/JModule.hh"
#include "JDetector/JDetectorToolkit.hh"
#include "JDetector/JDetectorSupportkit.hh"
#include "Jeep/JPrint.hh"
#include "Jeep/JParser.hh"
#include "Jeep/JMessage.hh"

Go to the source code of this file.

Functions

int main (int argc, char **argv)
 Auxiliary program to determine PDF of L1 hit. More...
 

Function Documentation

int main ( int  argc,
char **  argv 
)

Auxiliary program to determine PDF of L1 hit.

Author
mdejong

Definition at line 34 of file JPlotPDF_L1.cc.

35 {
36  using namespace std;
37  using namespace JPP;
38 
39  typedef JAbstractHistogram<double> JHistogram_t;
40 
41  string inputFile;
42  string outputFile;
43  double E;
44  double R;
45  double R_Hz;
46  JAngle3D dir;
47  double T_ns;
48  JHistogram_t histogram;
49  int debug;
50 
51  try {
52 
53  JParser<> zap("Auxiliary program to determine PDF of L1 hit.");
54 
55  zap['f'] = make_field(inputFile);
56  zap['o'] = make_field(outputFile) = "pdf.root";
57  zap['E'] = make_field(E, "muon energy [GeV]") = 1.0;
58  zap['R'] = make_field(R, "distance of approach [m]");
59  zap['D'] = make_field(dir, "(theta, phi) of PMT [rad]");
60  zap['T'] = make_field(T_ns, "time window [ns]") = 10.0; // [ns]
61  zap['B'] = make_field(R_Hz, "background rate [Hz]") = 0.0;
62  zap['H'] = make_field(histogram, "histogram binning") = JHistogram_t();
63  zap['d'] = make_field(debug) = 0;
64 
65  zap(argc, argv);
66  }
67  catch(const exception &error) {
68  FATAL(error.what() << endl);
69  }
70 
71  typedef JSplineFunction1S_t JFunction1D_t;
72  typedef JMAPLIST<JPolint1FunctionalMap,
73  JPolint1FunctionalGridMap,
74  JPolint1FunctionalGridMap>::maplist JMapList_t;
75  typedef JPDFTable<JFunction1D_t, JMapList_t> JPDF_t;
76 
77  JFunction1D_t::JSupervisor supervisor(new JFunction1D_t::JDefaultResult(zero));
78 
79  const JPDFType_t pdf_t[] = { DIRECT_LIGHT_FROM_MUON,
85 
86  const int N = sizeof(pdf_t) / sizeof(pdf_t[0]);
87 
88  JPDF_t pdf[N];
89 
90  for (int i = 0; i != N; ++i) {
91 
92  try {
93 
94  const string file_name = getFilename(inputFile, pdf_t[i]);
95 
96  NOTICE("loading input from file " << file_name << "... " << flush);
97 
98  pdf[i].load(file_name.c_str());
99 
100  NOTICE("OK" << endl);
101  }
102  catch(const JException& error) {
103  FATAL(error.what() << endl);
104  }
105 
106  pdf[i].setExceptionHandler(supervisor);
107  }
108 
109  if (!histogram.is_valid()) {
110 
111  histogram = JHistogram_t(-50.0, +50.0);
112 
113  histogram.setBinWidth(0.1);
114  }
115 
116 
117  JModule module = getModule<JKM3NeT_t>(1);
118 
119  module.rotate(JRotation3D(dir));
120 
121 
122  TFile out(outputFile.c_str(), "recreate");
123 
124  TH1D h0("h0", NULL, histogram.getNumberOfBins(), histogram.getLowerLimit(), histogram.getUpperLimit());
125 
126  JSplineFunction1S_t zsp;
127 
128  for (double t1 = histogram.getLowerLimit(); t1 <= histogram.getUpperLimit(); t1 += 0.1) {
129 
130  const double t2 = t1 + T_ns;
131 
132  JFunction1D_t::result_type y1;
133  JFunction1D_t::result_type y2;
134 
135  for (int i = 0; i != N; ++i) {
136 
137  JFunction1D_t::result_type p1;
138  JFunction1D_t::result_type p2;
139 
140  // add PMTs
141 
142  for (const auto& pmt : module) {
143  p1 += pdf[i](R, pmt.getTheta(), pmt.getPhi(), t1);
144  p2 += pdf[i](R, pmt.getTheta(), pmt.getPhi(), t2);
145  }
146 
147  if (is_deltarays(pdf_t[i])) {
148  p1 *= getDeltaRaysFromMuon(E);
149  p2 *= getDeltaRaysFromMuon(E);
150  } else if (is_bremsstrahlung(pdf_t[i])) {
151  p1 *= E;
152  p2 *= E;
153  }
154 
155  y1 += p1;
156  y2 += p2;
157  }
158 
159  // add background
160 
161  y1.f += R_Hz * 1e-9; // function value
162  y1.v += R_Hz * 1e-9 * (t1 - histogram.getLowerLimit()); // integral [Tmin,t1]
163  y2.v += R_Hz * 1e-9 * (t2 - histogram.getLowerLimit()); // integral [Tmin,t2]
164 
165  zsp[t1] = y1.f * (1.0 - exp(y1.v - y2.v)); // 1 - P(0)
166  }
167 
168  zsp.compile();
169 
170  for (int ix = 1; ix <= h0.GetNbinsX(); ++ix) {
171 
172  const double t1 = h0.GetBinCenter(ix);
173 
174  try {
175 
176  const JFunction1D_t::result_type result = zsp(t1);
177 
178  const double W = exp(-result.v) * result.f / (1.0 - exp(-result.V));
179 
180  h0.SetBinContent(ix, W);
181  }
182  catch(const exception&) {}
183  }
184 
185  out.Write();
186  out.Close();
187 }
Utility class to parse command line options.
Definition: JParser.hh:1514
TPaveText * p1
then usage $script< input file >[option[primary[working directory]]] nWhere option can be E
Definition: JMuonPostfit.sh:40
direct light from EM showers
Definition: JPDFTypes.hh:29
static const JZero zero
Function object to assign zero value.
Definition: JZero.hh:105
then warning Cannot perform comparison test for histogram
string outputFile
direct light from muon
Definition: JPDFTypes.hh:26
bool is_bremsstrahlung(const int pdf)
Test if given PDF type corresponds to Cherenkov light from Bremsstrahlung.
Definition: JPDFTypes.hh:137
scattered light from muon
Definition: JPDFTypes.hh:27
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Definition: JParser.hh:1989
scattered light from delta-rays
Definition: JPDFTypes.hh:33
#define NOTICE(A)
Definition: JMessage.hh:64
scattered light from EM showers
Definition: JPDFTypes.hh:30
JPDFType_t
PDF types.
Definition: JPDFTypes.hh:24
#define FATAL(A)
Definition: JMessage.hh:67
direct light from delta-rays
Definition: JPDFTypes.hh:32
p2
Definition: module-Z:fit.sh:74
then JCookie sh JDataQuality D $DETECTOR_ID R
Definition: JDataQuality.sh:41
then usage $script< input file >[option[primary[working directory]]] nWhere option can be N
Definition: JMuonPostfit.sh:40
bool is_deltarays(const int pdf)
Test if given PDF type corresponds to Cherenkov light from delta-rays.
Definition: JPDFTypes.hh:151
double getDeltaRaysFromMuon(const double E)
Equivalent EM-shower energy due to delta-rays per unit muon track length.
Definition: JPDFToolkit.hh:67
std::string getFilename(const std::string &file_name)
Get file name part, i.e. part after last JEEP::PATHNAME_SEPARATOR if any.
Definition: JeepToolkit.hh:128
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable STRING $argv[2] set_array QUANTILES set_variable FORMULA *[0] exp(-0.5 *(x-[1])*(x-[1])/([2]*[2]))" set_variable MODULE `getModule -a $DETECTOR -L "$STRING 0"` source JAcousticsToolkit.sh typeset -A TRIPODS get_tripods $WORKDIR/tripod.txt TRIPODS XMEAN
int debug
debug level