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Konstantin Ladutenko 6b3115107a new poynting plotting 10 лет назад
debian b911a457c8 Deleted some garbage files generated during compilation. 10 лет назад
doc 098e75e02b Even more changes. Reorganized code. 10 лет назад
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.gitignore c78969a511 Re-added scattnlay.cpp, it is needed to compile Python extension without cython installed. 10 лет назад
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README.md 2700b4a599 small changes 10 лет назад
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nmie-wrapper.cc 553a8d05d1 Reversed changes to scattnlay.pyx because the python extension would compile well but it was not returning the complex vectors (S1 and S2). If changed again we must verify that tes04.py works!!! 10 лет назад
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py_nmie.h f4efce1cd4 Several changes to complete the features 10 лет назад
scattcoeffs.txt 098e75e02b Even more changes. Reorganized code. 10 лет назад
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scattnlay.pyx f4efce1cd4 Several changes to complete the features 10 лет назад
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README.md

output example Output example: Field distribution inside layered Si\Ag\Si sphere and Poynting vector distribution in Ag sphere with poweflow lines calculated with Scattnlay.

How to use scattnlay

Table of contents:

Compile Code:

Compilation options

  • make source - Create source package (python library)
  • make install - Install on local system (python library)
  • make buildrpm - Generate a rpm package (python library)
  • make builddeb - Generate a deb package (python library)
  • make standalone - Create a standalone program
  • make clean - Delete temporal files

Use:

  1. Python library
    • Use scattnlay directly
from scattnlay import scattnlay
...
x = ...
m = ...
terms, Qext, Qsca, Qabs, Qbk, Qpr, g, Albedo, S1, S2 = scattnlay(x, m)
...
  • Execute some of the test scripts (located in the folder 'tests/python') Example:
./test01.py
  1. Standalone program
    • Execute scattnlay directly Usage:
scattnlay -l Layers x1 m1.r m1.i [x2 m2.r m2.i ...] [-c comment]
  • Execute some of the test scripts (located in the folder 'tests/shell') Example:
./test01.sh > test01.csv
  1. C++ library
    try {
      MultiLayerMie multi_layer_mie;
      multi_layer_mie.SetLayersSize(x);
      multi_layer_mie.SetLayersIndex(m);

      multi_layer_mie.RunMieCalculation();

      *Qsca = multi_layer_mie.GetQsca();
      *Qabs = multi_layer_mie.GetQabs();
    } catch(const std::invalid_argument& ia) {
      // Will catch if  multi_layer_mie fails or other errors.
      std::cerr << "Invalid argument: " << ia.what() << std::endl;
      throw std::invalid_argument(ia);
      return -1;
    }

Papers

  1. "Scattering of electromagnetic radiation by a multilayered sphere" O. Pena and U. Pal, Computer Physics Communications, vol. 180, Nov. 2009, pp. 2348-2354. http://dx.doi.org/10.1016/j.cpc.2009.07.010

  2. "Reduction of scattering using thin all-dielectric shells designed by stochastic optimizer" Konstantin Ladutenko, Ovidio Peña-Rodríguez, Irina Melchakova, Ilya Yagupov, and Pavel Belov J. Appl. Phys., vol. 116, pp. 184508, 2014 http://dx.doi.org/10.1063/1.4900529

Acknowledgment

We expect that all publications describing work using this software, or all commercial products using it, cite the following reference:

O. Pena and U. Pal, "Scattering of electromagnetic radiation by a multilayered sphere," Computer Physics Communications, vol. 180, Nov. 2009, pp. 2348-2354.

License

GPL v3+