| [601] | 1 | //--------------------------------------------------------------------------
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 | 2 | // File and Version Information:
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| [2615] | 3 | //      $Id: radspecvector.cc,v 1.9 2004-09-10 09:54:40 cmv Exp $
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| [601] | 4 | //
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 | 5 | // Description:
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 | 6 | //      Aim of the class: To give the energy density
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 | 7 | //                        The unity used here is W/m^2/Hz/sr
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 | 8 | //
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 | 9 | // History (add to end):
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 | 10 | //      Sophie   Oct, 1999  - creation
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 | 11 | //
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 | 12 | //------------------------------------------------------------------------
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 | 13 | 
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 | 14 | //---------------
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 | 15 | // C++ Headers --
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 | 16 | //---------------
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| [2615] | 17 | #include "sopnamsp.h"
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| [601] | 18 | #include "machdefs.h"
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| [2322] | 19 | #include <iostream>
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| [601] | 20 | #include <math.h>
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 | 21 | // #include <typeinfo>
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 | 22 | 
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 | 23 | #include "radspecvector.h"
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 | 24 | #include "pexceptions.h"
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 | 25 | 
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 | 26 | //----------------
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 | 27 | // Constructor --
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 | 28 | //----------------
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| [909] | 29 | 
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 | 30 | /*! 
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 | 31 |  * \class SOPHYA::RadSpectraVec 
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| [927] | 32 |  \ingroup SkyT
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| [909] | 33 |  * One may define the radiation
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 | 34 |  * spectrum with two vectors: <BR> one for the frequencies and the second for the
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 | 35 |  * value of the flux function. <BR>
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 | 36 |  * In that case, the class to use is RadSpectraVec !
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 | 37 |  */
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 | 38 | 
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| [668] | 39 | RadSpectraVec::RadSpectraVec()
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 | 40 | {
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 | 41 | }
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| [909] | 42 | /*! Constructor:
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 | 43 |   \param nu is the frequency vector <BR>
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 | 44 |   \param fdenu is the corresponding flux values (stored in a vector as well)
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 | 45 |  */
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| [601] | 46 | RadSpectraVec::RadSpectraVec(Vector const & nu, Vector const & fdenu, double numin, double numax)
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 | 47 |         : RadSpectra(numin, numax)
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 | 48 | {
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 | 49 |   if(nu.NElts() != fdenu.NElts())  
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 | 50 |     throw SzMismatchError("RadSpectraVec::RadSpectraVec() - Non equal vector sizes");
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 | 51 |   _vecOfNu = nu;
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 | 52 |   _vecOfFDeNu = fdenu;
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 | 53 |   _numin = nu(0);
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 | 54 |   _numax = nu(nu.NElts()-1);
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 | 55 | }
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 | 56 | 
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 | 57 | 
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 | 58 | //--------------
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 | 59 | // Destructor --
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 | 60 | //--------------
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 | 61 | RadSpectraVec::~RadSpectraVec()
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 | 62 | {
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 | 63 | }
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 | 64 | 
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 | 65 | //              ---------------------------
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 | 66 | //              --  Function Definitions --
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 | 67 | //              ---------------------------
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 | 68 | 
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 | 69 | 
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 | 70 | 
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| [909] | 71 | /*! The flux function extrapolates the flux values for the 
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 | 72 |   frequencies that are not present in the nu vector <BR>
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 | 73 |   given at the instanciation of the class.
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 | 74 |  */
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| [601] | 75 | double 
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 | 76 | RadSpectraVec::flux(double nu) const
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 | 77 | {
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 | 78 |   if ( (nu < _numin) || (nu > _numax) ) return(0.);
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| [610] | 79 |   double value = 0.;
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| [601] | 80 |   int sizeVecOfNu = _vecOfNu.NElts();
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| [610] | 81 |   if(nu <=  _vecOfNu(0)) return _vecOfFDeNu(0);
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| [601] | 82 |   if(nu >=  _vecOfNu(sizeVecOfNu-1)) return _vecOfFDeNu(sizeVecOfNu-1);
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 | 83 |   
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 | 84 |   for (int i=1; i<sizeVecOfNu; i++)
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 | 85 |     {
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| [610] | 86 |       if(nu < _vecOfNu(i))
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| [601] | 87 |         {
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 | 88 |           double up = _vecOfFDeNu(i) ;
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 | 89 |           double down = _vecOfFDeNu(i-1);
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 | 90 |           double xmin = _vecOfNu(i-1);
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 | 91 |           double xmax = _vecOfNu(i);
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 | 92 |           double a = ((up-down)/(xmax-xmin));
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 | 93 |           value = a*nu+(up-a*xmax);
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 | 94 |           return value;
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 | 95 |         }
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 | 96 |     }
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| [610] | 97 |   return _vecOfFDeNu(sizeVecOfNu-1);
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| [601] | 98 | }
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 | 99 | 
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| [669] | 100 | 
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 | 101 | 
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| [668] | 102 | void
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| [669] | 103 | RadSpectraVec::Print(ostream& os) const
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 | 104 | {
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 | 105 |   //  os << "RadSpectraVec::Print (" << typeid(*this).name() 
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 | 106 |   //     << ") - Fmin,Fmax= " << minFreq() << "," << maxFreq() << endl;
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 | 107 |   os << "RadSpectraVec::Print  - Fmin,Fmax= " << minFreq() << "," << maxFreq() << endl;
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 | 108 |   os << "MeanFreq= " << meanFreq() << "  Emission= " << flux(meanFreq()) << endl;
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 | 109 |   os << "PeakFreq= " << peakFreq() << "  Emission= " << flux(peakFreq()) << endl;
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 | 110 | 
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 | 111 | }
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 | 112 | 
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 | 113 | /*
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 | 114 | void
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| [668] | 115 | RadSpectraVec::WriteSelf(POutPersist& s) 
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 | 116 | {
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 | 117 |   s.PutI4(this->NbElts());
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 | 118 |   for (int i=0; i< this->NbElts(); i++)
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 | 119 |     {
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 | 120 |       s.PutR8(this->getNuVec(i));
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 | 121 |       s.PutR8(this->getFNuVec(i));
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 | 122 |     }
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 | 123 |   s.PutR8(this->minFreq());
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 | 124 |   s.PutR8(this->maxFreq());
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 | 125 |  
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 | 126 | }
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| [601] | 127 | 
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 | 128 | void
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| [668] | 129 | RadSpectraVec::ReadSelf(PInPersist& s) 
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 | 130 | {
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 | 131 |   s.GetI4(_size);
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 | 132 | 
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 | 133 |   _vecOfNu.ReSize(_size);
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 | 134 |   _vecOfFDeNu.ReSize(_size);
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 | 135 |   for (int i=0; i< _size; i++)
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 | 136 |     {
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 | 137 |       s.GetR8(_vecOfNu(i));
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 | 138 |       s.GetR8(_vecOfFDeNu(i));
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 | 139 |     } 
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 | 140 |   s.GetR8(_numin);
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 | 141 |   s.GetR8(_numax);
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 | 142 |   cout << "minFreq - maxFreq"<< endl; 
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 | 143 |   cout <<    _numin<< "-" <<  _numax << endl;
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 | 144 | }
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| [669] | 145 | */
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| [668] | 146 | 
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 | 147 | 
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