54 JParser<> zap(
"Program to verify generation of arrival times of Cherenkov photons from a muon using tabulated CDF.");
58 zap[
'E'] =
make_field(E,
"muon energy [GeV]") = 1.0;
59 zap[
'R'] =
make_field(R,
"distance of approach [m]");
60 zap[
'D'] =
make_field(dir,
"(theta, phi) of PMT [rad]");
67 catch(
const exception& error) {
68 FATAL(error.what() << endl);
80 const int N = inputFile.size();
87 for (
int i = 0; i != N; ++i) {
89 NOTICE(
"loading input from file " << inputFile[i] <<
"... " << flush);
93 cdf [i].load(inputFile[i].c_str());
109 cout <<
"> " << flush;
114 for (
int i = 0; i != N; ++i) {
127 cout <<
' ' <<
FIXED(6,2) << t <<
' ' <<
FIXED(5,2) << npe;
129 catch(
const exception& error) {
130 ERROR(error.what() << endl);
151 const double t0 = 0.0;
160 for ( ;
x < -10.0;
x += 5.0) { X.push_back(t0 +
x); }
161 for ( ;
x < +20.0;
x += 1.0) { X.push_back(t0 +
x); }
162 for ( ;
x < +50.0;
x += 2.0) { X.push_back(t0 +
x); }
165 for ( ;
x < +100.0;
x += 5.0) { X.push_back(t0 +
x); }
166 for ( ;
x < +250.0;
x += 10.0) { X.push_back(t0 +
x); }
167 for ( ;
x < +500.0;
x += 25.0) { X.push_back(t0 +
x); }
168 for ( ;
x < +900.0;
x += 50.0) { X.push_back(t0 +
x); }
171 h0 =
new TH1D(
"h0", NULL, X.size() - 1, X.data());
182 for (
int i = 0; i != N; ++i) {
184 for (
int j = 1;
j <= H1->GetNbinsX(); ++
j) {
188 const double x = H1->GetBinCenter(
j);
191 H1[i]->SetBinContent(
j, t);
193 catch(
const exception& error) {
194 ERROR(error.what() << endl);
199 if (numberOfEvents > 0) {
205 for (
int counter = 0; counter != numberOfEvents; ++counter) {
207 if (counter%1000== 0) {
213 for (
int i = 0; i != N; ++i) {
225 for (
int j = gRandom->Poisson(npe);
j != 0; --
j) {
227 const double x = gRandom->Rndm();
233 catch(
const exception& error) {
234 NOTICE(error.what() << endl);
242 const double W = 1.0 / (double) numberOfEvents;
245 timer.
print(cout, W);
#define DEBUG(A)
Message macros.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Auxiliary class for CPU timing and usage.
void print(std::ostream &out, const JScale_t scale=milli_t) const
Print timer data.
Data structure for angles in three dimensions.
double getTheta() const
Get theta angle.
double getPhi() const
Get phi angle.
virtual const char * what() const override
Get error message.
Utility class to parse command line options.
Multi-dimensional CDF table for arrival time of Cherenkov light.
Auxiliary class to manage set of compatible ROOT objects (e.g. histograms) using unique keys.
JAbstractHistogram< double > JHistogram_t
Type definition for scan along axis.
void convertToPDF(TH1 &h1, const std::string &option="NW", const double factor=1.0)
Convert 1D histogram to PDF.
double getDeltaRaysFromMuon(const double E, const JRange< double > T_GeV=JRange< double >(DELTARAY_TMIN, DELTARAY_TMAX))
Equivalent EM-shower energy due to delta-rays per unit muon track length.
bool is_deltarays(const int pdf)
Test if given PDF type corresponds to Cherenkov light from delta-rays.
bool is_bremsstrahlung(const int pdf)
Test if given PDF type corresponds to Cherenkov light from Bremsstrahlung.
@ DIRECT_LIGHT_FROM_MUON
direct light from muon
int getPDFType(const std::string &file_name)
Get PDF type.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
Auxiliary data structure for floating point format specification.