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Ovidio Peña Rodríguez 1c880dd237 Standalone programs and Python extensions are compiling with multiprecision. The debian package is still failing to build with MP. 8 年之前
debian ae294b55fd Changed version number to '2.0'. 10 年之前
doc 57c7261705 updated fiel plotting script 9 年之前
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tests a83c3e0105 Multiprecision with compiler macros to pick the precision 8 年之前
utils 098e75e02b Even more changes. Reorganized code. 10 年之前
.gitignore c78969a511 Re-added scattnlay.cpp, it is needed to compile Python extension without cython installed. 10 年之前
CHANGES 1b7786ad5a Initial commit based on Ovidio version of python-scattnlay 0.3.0 10 年之前
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MANIFEST.in bfafd4bcfb Reorganized code and increased version number to 2.0.0 10 年之前
Makefile 1c880dd237 Standalone programs and Python extensions are compiling with multiprecision. The debian package is still failing to build with MP. 8 年之前
PKG-INFO ae294b55fd Changed version number to '2.0'. 10 年之前
README.md 0dbdc38359 readme update 8 年之前
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scattnlay.pyx f4efce1cd4 Several changes to complete the features 10 年之前
setup.py ae294b55fd Changed version number to '2.0'. 10 年之前
setup_cython.py ae294b55fd Changed version number to '2.0'. 10 年之前

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 (scripts field-SiAgSi-flow.py and field-Ag-flow.py from example section as revision ).

How to use scattnlay

Table of contents:

Compile Code:

To compile the source you will need C++11 capable compiler. To use MultiPrecision feature you need to install Boost.Multiprecision library (at least 1.58 ver).

Compilation options

  • make source - Create source package for Python extension
  • make cython - Convert Cython code to C++
  • make python_ext - Create Python extension using C++ code
  • make cython_ext - Create Python extension using Cython code
  • make install - Install Python extension on local system
  • make buildrpm - Generate a rpm package for Python extension
  • make builddeb - Generate a deb package for Python extension
  • make standalone - Create standalone programs (scattnlay and fieldnlay)
  • make clean - Delete temporal files

Use:

  1. Python library
    • Use scattnlay directly
from scattnlay import scattnlay, fieldnlay
...
x = ...
m = ...
coords = ...
terms, Qext, Qsca, Qabs, Qbk, Qpr, g, Albedo, S1, S2 = scattnlay(x, m)
terms, E, H = fieldnlay(x, m, coords)
...
  • Execute some of the test scripts (located in the folder 'tests/python') Example:
./test01.py
  1. Standalone program
    • Execute scattnlay directly:
scattnlay -l Layers x1 m1.r m1.i [x2 m2.r m2.i ...] [-t ti tf nt] [-c comment]
  • Execute fieldnlay directly:
fieldnlay -l Layers x1 m1.r m1.i [x2 m2.r m2.i ...] -p xi xf nx yi yf ny zi zf nz [-c comment]
  • Execute some of the test scripts (located in the folder 'tests/shell'):
./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

  3. "Superabsorption of light by nanoparticles" Konstantin Ladutenko, Pavel Belov, Ovidio Peña-Rodríguez, Ali Mirzaei, Andrey E. Miroshnichenko and Ilya V. Shadrivov Nanoscale, 2015,7, 18897-18901 http://dx.doi.org/10.1039/C5NR05468K

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+