| 1 | // Dominique YVON, CEA/DAPNIA/SPP 02/2000
|
|---|
| 2 |
|
|---|
| 3 | #ifndef AbsLightSource_H
|
|---|
| 4 | #define AbsLightSource_H
|
|---|
| 5 |
|
|---|
| 6 | #include <iostream>
|
|---|
| 7 | #include "unitvector.h"
|
|---|
| 8 | #include "radspec.h"
|
|---|
| 9 | #include "lsrcradspec.h"
|
|---|
| 10 | #include "specresp.h"
|
|---|
| 11 |
|
|---|
| 12 | #define T_CMBR (2.726) // Kelvin
|
|---|
| 13 |
|
|---|
| 14 | class AbsLightSource {
|
|---|
| 15 | //friend class SigCalcTool;
|
|---|
| 16 | public:
|
|---|
| 17 | AbsLightSource() :PtSourceS(false), QPtSource(false), LScrFSep(false), IsLSrcMappedPower (false)
|
|---|
| 18 | { sprintf(Name, "");
|
|---|
| 19 | }
|
|---|
| 20 | ~AbsLightSource() { }
|
|---|
| 21 |
|
|---|
| 22 | virtual double powSpecDens(double theta,double phi,double freq)=0;
|
|---|
| 23 | // Return power density at coordinates
|
|---|
| 24 | // (W/m2/Hz/St)
|
|---|
| 25 | LSrcRadSpec getPowerSpec(double theta,double phi);
|
|---|
| 26 | // return Object including power spectrum versus frequency in direction theta, phi
|
|---|
| 27 | // (W/m2/Hz/St)
|
|---|
| 28 | // Not recommended for intensive use. May Be inefficient or inaccurrate..
|
|---|
| 29 |
|
|---|
| 30 | //virtual double powerDens(double theta,double phi)=0;
|
|---|
| 31 | // Return power Dens at coordinates, integrated over frequency
|
|---|
| 32 | // May Require initialisation
|
|---|
| 33 | // (Watt/m2/St)
|
|---|
| 34 | double LSrcResol() const {
|
|---|
| 35 | return resolution; // constructeur have to initialise res
|
|---|
| 36 | }
|
|---|
| 37 |
|
|---|
| 38 | inline bool IsPtSourceS() { return PtSourceS;}
|
|---|
| 39 | inline bool IsQPtSrc() { return QPtSource;}
|
|---|
| 40 | inline bool IsFreqSep() { return LScrFSep;}
|
|---|
| 41 | inline bool IsMappedPowerSrc() {return IsLSrcMappedPower;}
|
|---|
| 42 | // Optimisation pour calculs avec Lobes separables facon R. Teyssier
|
|---|
| 43 | virtual void print(ostream& OutStr) const;
|
|---|
| 44 | /*
|
|---|
| 45 | virtual void Reset(const SpectralResponse& Filtre) {
|
|---|
| 46 | cerr<<"you call reset function when not allowed: program exit"<<endl;
|
|---|
| 47 | exit(-1);
|
|---|
| 48 | return;
|
|---|
| 49 | }
|
|---|
| 50 | */
|
|---|
| 51 | // Make sense only for QuasiPointSource
|
|---|
| 52 | virtual UnitVector GetVSrcCenter();
|
|---|
| 53 | virtual double getAngSize() {
|
|---|
| 54 | cerr<<"call for getAngSize in a non Quasipt light source"<<endl;
|
|---|
| 55 | exit(-1);
|
|---|
| 56 | return 0;
|
|---|
| 57 | }
|
|---|
| 58 |
|
|---|
| 59 | // Optimisation for LightSource separable in frequency
|
|---|
| 60 | virtual double spectre(double frequence) {
|
|---|
| 61 | frequence=0;
|
|---|
| 62 | // Return the frequency spectrum independent of coordinates
|
|---|
| 63 | cerr<<"call for spectrum in an non separable light source"<<endl;
|
|---|
| 64 | exit(-1);
|
|---|
| 65 | return 0;
|
|---|
| 66 | }
|
|---|
| 67 |
|
|---|
| 68 | virtual double powerDensAmpli(double theta,double phi) {
|
|---|
| 69 | theta=phi; //Pour eviter un warning
|
|---|
| 70 | // Return power density Amplidude at coordinates (W/m2/GHz/St)
|
|---|
| 71 | cerr<<"call for powerDensAmpli in an non separable LightSource"<<endl;
|
|---|
| 72 | exit(-1);
|
|---|
| 73 | return 0;
|
|---|
| 74 | }
|
|---|
| 75 | double planckSpectrum(double freq, double Tempe=T_CMBR);
|
|---|
| 76 | // W/m2/st/Hz
|
|---|
| 77 | double planckSpecDiff(double DTempe, double freq, double Tempe=T_CMBR);
|
|---|
| 78 | // W/m2/St/Hz
|
|---|
| 79 | protected:
|
|---|
| 80 | bool PtSourceS; // Is a set of PtSources (Galaxie IR ponctuelles?)
|
|---|
| 81 | bool QPtSource; // Is this a QuasiPointSource. (Sun, Jupiter, Mars et al.)
|
|---|
| 82 | bool LScrFSep; // Are spatial coordinated and frequency separable variables?
|
|---|
| 83 | bool IsLSrcMappedPower; // Is the LSrc a in band map power. Valid only for Lobes separabe in freq.
|
|---|
| 84 | double resolution; // Map Pixellisation resolution.;
|
|---|
| 85 | char Name[32];
|
|---|
| 86 | };
|
|---|
| 87 |
|
|---|
| 88 | #endif |
|---|