1 #ifndef CLASSIC_FIELDMAP1DDYNAMICFAST_HH
2 #define CLASSIC_FIELDMAP1DDYNAMICFAST_HH
16 double &yIni,
double &yFinal,
17 double &zIni,
double &zFinal)
const;
22 virtual void getOnaxisEz(std::vector<std::pair<double, double>> &eZ);
33 bool checkFileData(std::ifstream &fieldFile,
bool parsingPassed);
35 double onAxisFieldP[],
double onAxisFieldPP[],
36 double onAxisFieldPPP[]);
38 std::vector<double> fieldComponents)
const;
42 double onAxisFieldPP[],
43 double onAxisFieldPPP[]);
45 void normalizeField(
double maxEz, std::vector<double> &fourierCoefs);
46 double readFileData(std::ifstream &fieldFile,
double fieldData[]);
48 std::vector<std::pair<double, double>> &eZ);
50 void scaleField(
double maxEz, std::vector<std::pair<double, double>> &eZ);
virtual double getFrequency() const
virtual void setFrequency(double freq)
gsl_interp_accel * onAxisFieldPAccel_m
virtual bool getFieldstrength(const Vector_t &R, Vector_t &E, Vector_t &B) const
gsl_spline * onAxisFieldPPInterpolants_m
On axis field first derivative interpolation structure.
double deltaZ_m
Number of grid points in field input file.
static FM1DDynamic_fast create(const std::string &filename)
gsl_spline * onAxisFieldPPPInterpolants_m
On axis field second derivative interpolation structure.
void stripFileHeader(std::ifstream &fieldFile)
virtual void getInfo(Inform *)
double rBegin_m
2 Pi divided by the field RF wavelength squared.
void computeFieldOffAxis(const Vector_t &R, Vector_t &E, Vector_t &B, std::vector< double > fieldComponents) const
void computeFieldDerivatives(std::vector< double > fourierCoefs, double onAxisFieldP[], double onAxisFieldPP[], double onAxisFieldPPP[])
bool readFileHeader(std::ifstream &fieldFile)
double readFileData(std::ifstream &fieldFile, double fieldData[])
gsl_interp_accel * onAxisFieldPPPAccel_m
std::shared_ptr< _FM1DDynamic_fast > FM1DDynamic_fast
virtual bool isInside(const Vector_t &r) const
virtual ~_FM1DDynamic_fast()
double twoPiOverLambdaSq_m
Field angular frequency (Hz).
virtual bool getFieldDerivative(const Vector_t &R, Vector_t &E, Vector_t &B, const DiffDirection &dir) const
void normalizeField(double maxEz, std::vector< double > &fourierCoefs)
_FM1DDynamic_fast(const std::string &filename)
double rEnd_m
Minimum radius of field.
double zEnd_m
Longitudinal start of field.
unsigned int accuracy_m
Field grid point spacing.
void prepareForMapCheck(std::vector< double > &fourierCoefs)
gsl_interp_accel * onAxisFieldAccel_m
On axis field third derivative interpolation structure.
gsl_interp_accel * onAxisFieldPPAccel_m
virtual void getFieldDimensions(double &zBegin, double &zEnd) const
unsigned int numberOfGridPoints_m
Field length.
void computeInterpolationVectors(double onAxisFieldP[], double onAxisFieldPP[], double onAxisFieldPPP[])
virtual void getOnaxisEz(std::vector< std::pair< double, double >> &eZ)
double length_m
Longitudinal end of field.
std::vector< double > computeFourierCoefficients(double fieldData[])
gsl_spline * onAxisFieldPInterpolants_m
On axis field interpolation structure.
double zBegin_m
Maximum radius of field.
bool checkFileData(std::ifstream &fieldFile, bool parsingPassed)
void computeFieldOnAxis(double z, std::vector< double > &fieldComponents) const
gsl_spline * onAxisFieldInterpolants_m
On axis field data.
void scaleField(double maxEz, std::vector< std::pair< double, double >> &eZ)