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documentation [2018/07/13 09:42]
claudia
documentation [2019/05/13 23:21] (current)
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   * R. Buras, T. Dowling, and C. Emde. **New secondary-scattering correction in DISORT with increased efficiency for forward scattering.** //J. Quant. Spectrosc. Radiat. Transfer//, 112(12):​2028-2034,​ 2011. [[https://​doi.org/​10.1016/​j.jqsrt.2011.03.019|link]].   * R. Buras, T. Dowling, and C. Emde. **New secondary-scattering correction in DISORT with increased efficiency for forward scattering.** //J. Quant. Spectrosc. Radiat. Transfer//, 112(12):​2028-2034,​ 2011. [[https://​doi.org/​10.1016/​j.jqsrt.2011.03.019|link]].
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 +The tool to calculate line-by-line absorption coefficients **py4CAtS** (PYthon for Computational ATmospheric Spectroscopy) is described in: 
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 +  * F. Schreier, S. Gimeno García, P. Hochstaffl, and S. Städt. **Py4CAtS—PYthon for Computational ATmospheric Spectroscopy**. Atmosphere 2019, 10, 262. [[https://​www.mdpi.com/​2073-4433/​10/​5/​262/​htm|link]]
  
 There are various publications related to the **Monte Carlo solver MYSTIC** (1D version available in the public version of libRadtran):​ There are various publications related to the **Monte Carlo solver MYSTIC** (1D version available in the public version of libRadtran):​
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   * //​Polarization://​ C. Emde, R. Buras, B. Mayer, and M. Blumthaler. **The impact of aerosols on polarized sky radiance: model development,​ validation, and applications.** //Atmos. Chem. Phys.//, 10, 383-396, 2010. [[http://​www.atmos-chem-phys.net/​10/​383/​2010/​acp-10-383-2010.html|link]]   * //​Polarization://​ C. Emde, R. Buras, B. Mayer, and M. Blumthaler. **The impact of aerosols on polarized sky radiance: model development,​ validation, and applications.** //Atmos. Chem. Phys.//, 10, 383-396, 2010. [[http://​www.atmos-chem-phys.net/​10/​383/​2010/​acp-10-383-2010.html|link]]
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 +  * //​Topography://​ B. Mayer, S.W. Hoch, and C.D. Whiteman. **Validating the MYSTIC three-dimensional radiative transfer model with observations from the complex topography of Arizona'​s Meteor Crater.** //Atmos. Chem. Phys.//, 10, 8685-8696, 2010. [[https://​www.atmos-chem-phys.net/​10/​8685/​2010/​|link]]
  
   * //Variance reduction methods:// R. Buras and B. Mayer. **Efficient unbiased variance reduction techniques for Monte Carlo simulations of radiative transfer in cloudy atmospheres:​ the solution.** //J. Quant. Spectrosc. Radiat. Transfer//, 112, 434-447, 2011. [[http://​www.sciencedirect.com/​science/​article/​pii/​S0022407311001373|link]]   * //Variance reduction methods:// R. Buras and B. Mayer. **Efficient unbiased variance reduction techniques for Monte Carlo simulations of radiative transfer in cloudy atmospheres:​ the solution.** //J. Quant. Spectrosc. Radiat. Transfer//, 112, 434-447, 2011. [[http://​www.sciencedirect.com/​science/​article/​pii/​S0022407311001373|link]]
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   * //Efficient spectral calculations://​ C. Emde, R. Buras, R., and B. Mayer. **ALIS: An efficient method to compute high spectral resolution polarized solar radiances using the Monte Carlo approach.** //J. Quant. Spectrosc. Radiat. Transfer//, 112, 1622-1631, 2011. [[http://​www.sciencedirect.com/​science/​article/​pii/​S0022407311001373|link]]   * //Efficient spectral calculations://​ C. Emde, R. Buras, R., and B. Mayer. **ALIS: An efficient method to compute high spectral resolution polarized solar radiances using the Monte Carlo approach.** //J. Quant. Spectrosc. Radiat. Transfer//, 112, 1622-1631, 2011. [[http://​www.sciencedirect.com/​science/​article/​pii/​S0022407311001373|link]]
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 +  * //Thermal heating and cooling rates:// C. Klinger and B. Mayer. **Three-dimensional Monte Carlo calculation of atmospheric thermal heating rates.** , //J. Quant. Spectrosc. Radiat. Transfer//, 144:​123--136,​ 2014. [[https://​www.sciencedirect.com/​science/​article/​pii/​S0022407314001642|link]]
  
 === libRadtran development === === libRadtran development ===
 
 
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