1 | //--------------------------------------------------------------------------
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2 | // File and Version Information:
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3 | // $Id: radspec.cc,v 1.3 1999-11-29 14:16:06 ansari Exp $
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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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17 | #include "machdefs.h"
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18 | #include <iostream.h>
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19 | #include <typeinfo>
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20 | #include <math.h>
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21 |
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22 | #include "radspec.h"
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23 | #include "integ.h"
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24 |
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25 | //----------------
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26 | // Constructor --
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27 | //----------------
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28 | RadSpectra::RadSpectra(double numin, double numax)
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29 | {
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30 | _numin = numin;
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31 | _numax = numax;
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32 | }
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33 |
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34 |
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35 | //--------------
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36 | // Destructor --
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37 | //--------------
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38 | RadSpectra::~RadSpectra()
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39 | {
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40 | }
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41 |
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42 | // ---------------------------
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43 | // -- Function Definitions --
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44 | // ---------------------------
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45 |
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46 | double
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47 | RadSpectra::minFreq() const
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48 | {
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49 | return _numin;
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50 | }
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51 |
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52 | double
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53 | RadSpectra::maxFreq() const
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54 | {
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55 | return _numax;
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56 | }
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57 |
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58 | double
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59 | RadSpectra::meanFreq() const
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60 | {
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61 | double result = (_numax+_numin)/2.;
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62 | return result;
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63 | }
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64 |
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65 |
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66 |
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67 | // peakFreq returns the value of the frequency for the
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68 | // peak of the spectrum.
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69 | double
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70 | RadSpectra::peakFreq() const
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71 | {
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72 | double maxAnswer = -1.e99;
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73 | double maxNu = -10;
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74 | double nu;
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75 | for (int i=1; i<1000;i++)
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76 | {
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77 | nu=(_numax-_numin)*i/1000.+_numin;
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78 | double lookForMax = flux(nu);
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79 | if(maxAnswer <= lookForMax) {
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80 | maxAnswer= lookForMax;
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81 | maxNu = nu;
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82 | }
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83 | }
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84 | return maxNu;
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85 | }
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86 |
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87 | // To change min-max frequency
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88 | void
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89 | RadSpectra::setMinMaxFreq(double numin, double numax)
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90 | {
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91 | _numin = numin;
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92 | _numax = numax;
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93 | }
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94 |
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95 | // the RadSpectra_fluxFunction function is used to call TrpzInteg double(double)
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96 | // (integration over a range of frequencies)
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97 | static RadSpectra* _raypourfinteg = NULL;
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98 | static double RadSpectra_fluxFunction(double nu)
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99 | {
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100 | return(_raypourfinteg->flux(nu));
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101 | }
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102 |
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103 | double
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104 | RadSpectra::integratedFlux(double f1, double f2) const
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105 | {
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106 | // cout << endl;
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107 | // cout << this->minFreq() << " = " << this->maxFreq() << endl;
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108 | // cout << f1 << " = " << f2 << endl;
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109 | if(f1 < this->minFreq()) f1 = this->minFreq();
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110 | if(f2 > this->maxFreq()) f2 = this->maxFreq();
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111 | _raypourfinteg = const_cast<RadSpectra *>(this);
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112 | TrpzInteg I(RadSpectra_fluxFunction , f1, f2);
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113 | double val = (double)I;
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114 | _raypourfinteg = NULL; // On ne peut pas faire ca avant la destruction de I
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115 | return(val);
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116 | }
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117 | double
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118 | RadSpectra::integratedFlux() const
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119 | {
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120 | return integratedFlux(this->minFreq(),this->maxFreq());
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121 | }
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122 |
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123 | // integration using the logarithm !!
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124 | // Carefull!! Base 10....
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125 | static RadSpectra* _rayIntLog = NULL;
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126 |
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127 | static double RadSpectra_logFluxFunction(double tau)
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128 | {
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129 | double value = _rayIntLog->flux(pow(10,tau))*pow(10,tau);
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130 | return(value);
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131 | }
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132 |
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133 | double
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134 | RadSpectra::logIntegratedFlux(double f1, double f2) const
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135 | {
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136 | if(f1 < this->minFreq()) f1 = this->minFreq();
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137 | if(f2 > this->maxFreq()) f2 = this->maxFreq();
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138 |
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139 | double f1Log = log10(f1);
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140 | double f2Log = log10(f2);
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141 | if(f1Log < -1.e99) f1Log = -1.e99;
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142 | if(f2Log > 1.e99) f2Log = 1.e99;
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143 | _rayIntLog = const_cast<RadSpectra *>(this);
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144 | TrpzInteg I(RadSpectra_logFluxFunction,f1Log,f2Log);
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145 | double value = (double)I * log(10.);
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146 | _rayIntLog = NULL;
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147 | return(value);
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148 | }
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149 |
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150 | double
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151 | RadSpectra::logIntegratedFlux() const
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152 | {
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153 | return logIntegratedFlux(_numin,_numax);
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154 | }
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155 |
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156 | // the RadSpectra_filteredFlux function is used to call TrpzInteg double(double)
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157 | // (integration over a range of frequencies with a filter)
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158 | static SpectralResponse* _filter = NULL ;
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159 | static double RadSpectra_filteredFlux(double nu)
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160 | {
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161 | double flux = _raypourfinteg->flux(nu);
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162 | return(flux * _filter->transmission(nu));
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163 | }
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164 |
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165 |
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166 | double
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167 | RadSpectra::filteredIntegratedFlux(SpectralResponse const& filter, double f1, double f2) const
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168 | {
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169 | _raypourfinteg = const_cast<RadSpectra *>(this);
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170 | _filter = const_cast<SpectralResponse *>(&filter);
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171 | if(f1 < this->minFreq()) f1 = this->minFreq();
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172 | if(f2 > this->maxFreq()) f2 = this->maxFreq();
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173 |
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174 | TrpzInteg I(RadSpectra_filteredFlux,f1,f2);
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175 | double val = (double)I;
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176 | _raypourfinteg = NULL;
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177 | _filter = NULL;
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178 | return(val);
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179 | }
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180 |
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181 | double
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182 | RadSpectra::filteredIntegratedFlux(SpectralResponse const& filter)
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183 | {
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184 | double minOfMin = filter.minFreq();
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185 | double maxOfMax = filter.maxFreq();
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186 | if(minOfMin < this->minFreq()) minOfMin = this->minFreq();
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187 | if(maxOfMax > this->maxFreq()) maxOfMax = this->maxFreq();
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188 | return(filteredIntegratedFlux(filter, minOfMin, maxOfMax ) );
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189 | }
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190 |
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191 |
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192 | // the RadSpectraVec_filteredFlux function is used to call TrpzInteg double(double)
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193 | // (integration over a range of frequencies with a filter)
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194 | static double RadSpectra_logFilteredFlux(double tau)
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195 | {
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196 | double nu = pow(10,tau);
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197 | double flux = _raypourfinteg->flux(nu)*nu;
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198 | double result = flux * _filter->transmission(nu);
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199 | return(result);
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200 | }
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201 |
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202 |
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203 | double
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204 | RadSpectra::filteredLogIntFlux(SpectralResponse const& filter, double f1, double f2) const
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205 | {
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206 |
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207 | _raypourfinteg = NULL;
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208 | _filter = NULL;
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209 | if(f1 < this->minFreq()) f1 = this->minFreq();
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210 | if(f2 > this->maxFreq()) f2 = this->maxFreq();
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211 |
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212 | double f1Log = log10(f1);
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213 | double f2Log = log10(f2);
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214 | if(f1Log < -1.e99) f1Log = -1.e99;
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215 | if(f2Log > 1.e99) f2Log = 1.e99;
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216 | _raypourfinteg = const_cast<RadSpectra *>(this);
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217 | _filter = const_cast<SpectralResponse *>(&filter);
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218 | TrpzInteg I(RadSpectra_logFilteredFlux,f1Log,f2Log);
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219 | double val = (double)I;
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220 | _raypourfinteg = NULL;
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221 | _filter = NULL;
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222 | return(val* log(10.));
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223 | }
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224 |
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225 | double
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226 | RadSpectra::filteredLogIntFlux(SpectralResponse const& filter)
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227 | {
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228 | return(filteredLogIntFlux(filter, filter.minFreq(), filter.maxFreq() ) );
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229 | }
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230 |
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231 |
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232 |
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233 |
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234 | void
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235 | RadSpectra::Print(ostream& os) const
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236 | {
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237 | // os << "RadSpectra::Print (" << typeid(*this).name()
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238 | // << ") - Fmin,Fmax= " << minFreq() << "," << maxFreq() << endl;
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239 | os << "RadSpectra::Print - Fmin,Fmax= " << minFreq() << "," << maxFreq() << endl;
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240 | os << "MeanFreq= " << meanFreq() << " Emission= " << flux(meanFreq()) << endl;
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241 | os << "PeakFreq= " << peakFreq() << " Emission= " << flux(peakFreq()) << endl;
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242 |
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243 | }
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244 |
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245 |
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