13 FieldstrengthEz_m(nullptr),
14 FieldstrengthEr_m(nullptr) {
16 std::string tmpString;
24 bool parsing_passed =
true;
26 parsing_passed = interpretLine<std::string, std::string>(file, tmpString, tmpString);
28 parsing_passed = interpretLine<std::string, std::string, std::string>(file,
34 if (tmpString !=
"TRUE" &&
37 "The third string on the first line of 2D field "
38 "maps has to be either TRUE or FALSE");
43 if (tmpString ==
"ZX") {
45 parsing_passed = parsing_passed &&
47 parsing_passed = parsing_passed &&
49 }
else if (tmpString ==
"XZ") {
51 parsing_passed = parsing_passed &&
53 parsing_passed = parsing_passed &&
56 std::cerr <<
"unknown orientation of 2D electrostatic fieldmap" << std::endl;
57 parsing_passed =
false;
61 parsing_passed = parsing_passed && interpretLine<double, double>(file, tmpDouble, tmpDouble);
64 parsing_passed = parsing_passed &&
70 if (!parsing_passed) {
74 "An error occured when reading the fieldmap '" +
Filename_m +
"'");
172 const double RR = std::sqrt(R(0) * R(0) + R(1) * R(1));
174 const int indexr = (int)std::floor(RR /
hr_m);
175 const double leverr = (RR /
hr_m) - indexr;
177 const int indexz = (int)std::floor((R(2) -
zbegin_m) /
hz_m);
178 const double leverz = (R(2) -
zbegin_m) /
hz_m - indexz;
187 const double EfieldR = (1.0 - leverz) * (1.0 - leverr) *
FieldstrengthEr_m[index1]
192 const double EfieldZ = (1.0 - leverz) * (1.0 - leverr) *
FieldstrengthEz_m[index1]
198 E(0) += EfieldR * R(0) / RR;
199 E(1) += EfieldR * R(1) / RR;