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- #include "../src/nmie.hpp"
- #include "../src/nmie.hpp"
- #include "../src/nmie-precision.hpp"
- #include <complex>
- #include <cstdio>
- #include <string>
- #include "../src/nmie-applied.hpp"
- #include "../src/nmie-applied-impl.hpp"
- #include "../src/nmie-precision.hpp"
- #include "./read-spectra.h"
- int main(int argc, char *argv[]) {
- using namespace nmie ;
- try {
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- nmie::MultiLayerMieApplied<nmie::FloatType> multi_layer_mie;
- const std::complex<double> epsilon_Si(16, 0);
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- const std::complex<double> index_Si = std::sqrt(epsilon_Si);
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- double WL=550;
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- double core_width = 196/2.0;
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- multi_layer_mie.AddTargetLayer(core_width, index_Si);
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- multi_layer_mie.SetWavelength(WL);
- multi_layer_mie.RunMieCalculation();
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- double Qsca = static_cast<double>(multi_layer_mie.GetQsca());
- printf("Qsca = %g\n", Qsca);
- std::vector< std::vector<std::complex<nmie::FloatType> > > aln, bln, cln, dln;
- multi_layer_mie.GetExpanCoeffs(aln, bln, cln, dln);
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- printf("\n Scattering");
- for (int l = 0; l<aln.size(); ++l) {
- int n = 0;
- printf("aln[%i][%i] = %g, %gi\n", l, n+1, aln[l][n].real(), aln[l][n].imag());
- printf("bln[%i][%i] = %g, %gi\n", l, n+1, bln[l][n].real(), bln[l][n].imag());
- printf("cln[%i][%i] = %g, %gi\n", l, n+1, cln[l][n].real(), cln[l][n].imag());
- printf("dln[%i][%i] = %g, %gi\n", l, n+1, dln[l][n].real(), dln[l][n].imag());
- n = 1;
- printf("aln[%i][%i] = %g, %gi\n", l, n+1, aln[l][n].real(), aln[l][n].imag());
- printf("bln[%i][%i] = %g, %gi\n", l, n+1, bln[l][n].real(), bln[l][n].imag());
- printf("cln[%i][%i] = %g, %gi\n", l, n+1, cln[l][n].real(), cln[l][n].imag());
- printf("dln[%i][%i] = %g, %gi\n", l, n+1, dln[l][n].real(), dln[l][n].imag());
- n = 2;
- printf("aln[%i][%i] = %g, %gi\n", l, n+1, aln[l][n].real(), aln[l][n].imag());
- printf("bln[%i][%i] = %g, %gi\n", l, n+1, bln[l][n].real(), bln[l][n].imag());
- printf("cln[%i][%i] = %g, %gi\n", l, n+1, cln[l][n].real(), cln[l][n].imag());
- printf("dln[%i][%i] = %g, %gi\n", l, n+1, dln[l][n].real(), dln[l][n].imag());
- n = 3;
- printf("aln[%i][%i] = %g, %gi\n", l, n+1, aln[l][n].real(), aln[l][n].imag());
- printf("bln[%i][%i] = %g, %gi\n", l, n+1, bln[l][n].real(), bln[l][n].imag());
- printf("cln[%i][%i] = %g, %gi\n", l, n+1, cln[l][n].real(), cln[l][n].imag());
- printf("dln[%i][%i] = %g, %gi\n", l, n+1, dln[l][n].real(), dln[l][n].imag());
- n = 4;
- printf("aln[%i][%i] = %g, %gi\n", l, n+1, aln[l][n].real(), aln[l][n].imag());
- printf("bln[%i][%i] = %g, %gi\n", l, n+1, bln[l][n].real(), bln[l][n].imag());
- printf("cln[%i][%i] = %g, %gi\n", l, n+1, cln[l][n].real(), cln[l][n].imag());
- printf("dln[%i][%i] = %g, %gi\n", l, n+1, dln[l][n].real(), dln[l][n].imag());
- }
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- } catch( const std::invalid_argument& ia ) {
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- std::cerr << "Invalid argument: " << ia.what() << std::endl;
- return -1;
- }
- return 0;
- }
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