Bibliography

[BM11]

Robert Buras and Bernhard Mayer. Efficient unbiased variance reduction techniques for Monte Carlo simulations of radiative transfer in cloudy atmospheres: The solution. Journal of Quantitative Spectroscopy and Radiative Transfer, 112(3):434–447, February 2011. URL: https://www.sciencedirect.com/science/article/pii/S0022407310003791, doi:10.1016/j.jqsrt.2010.10.005.

[Hap12]

Bruce Hapke. Theory of Reflectance and Emittance Spectroscopy. Cambridge University Press, 2012. ISBN 978-0-521-88349-8.

[LCD+24]

Pavel Litvinov, Cheng Chen, Oleg Dubovik, Lukas Bindreiter, Christian Matar, David Fuertes, Anton Lopatin, Tatyana Lapyonok, Verena Lanzinger, Andreas Hangler, Michael Aspetsberger, Martin de Graaf, Lieuwe Gijsbert Tilstra, Piet Stammes, Alexandru Dandocsi, Daniele Gasbarra, Elody Fluck, Claus Zehner, and Christian Retscher. Extended aerosol and surface characterization from S5P/TROPOMI with GRASP algorithm. Part I: Conditions, approaches, performance and new possibilities. Remote Sensing of Environment, 313:114355, November 2024. doi:10.1016/j.rse.2024.114355.

[MBreonFedeleB09]

Fabienne Maignan, François-Marie Bréon, Emilie Fédèle, and Marc Bouvier. Polarized reflectances of natural surfaces: Spaceborne measurements and analytical modeling. Remote Sensing of Environment, 113(12):2642–2650, December 2009. doi:10.1016/j.rse.2009.07.022.

[MT97]

M. I. Mishchenko and L. D. Travis. Satellite retrieval of aerosol properties over the ocean using polarization as well as intensity of reflected sunlight. Journal of Geophysical Research, 102:16989–17013, 1997. doi:10.1029/96JD02425.

[NJL+25]

D. T. Nguyen, S. Jacquemoud, A. Lucas, S. Douté, C. Ferrari, S. Coustance, S. Marcq, and A. Meygret. Mapping the surface properties of the Asal-Ghoubbet rift by massive inversion of the Hapke model on Pleiades multiangular images. Remote Sensing of Environment, 322:114691, 2025. doi:10.1016/j.rse.2025.114691.

[RPV93]

Hafizur Rahman, Bernard Pinty, and Michel M. Verstraete. Coupled surface-atmosphere reflectance ( CSAR ) model: 2. Semiempirical surface model usable with NOAA advanced very high resolution radiometer data. Journal of Geophysical Research: Atmospheres, 98:20791–20801, 1993. doi:10.1029/93JD02072.

[SLBS+99]

Alan H. Strahler, Wolfgang Lucht, Crystal Barker Schaaf, Trevor Tsang, Gao, Feng, Li, Xiaowen, Muller Jan-Peter, Philip Lewis, and Michael J. Barnsley. Modis brdf/albedo product: algorithm theoretical basis document version 5.0. techreport MOD43, Boston University, 1999. URL: https://modis.gsfc.nasa.gov/data/atbd/atbd_mod09.pdf.

[WLP+06]

Jean-Luc Widlowski, Thomas Lavergne, Bernard Pinty, Michel Verstraete, and Nadine Gobron. Rayspread: A Virtual Laboratory for Rapid BRF Simulations Over 3-D Plant Canopies. In Frank Graziani, editor, Computational Methods in Transport, Lecture Notes in Computational Science and Engineering, 211–231. Springer Berlin Heidelberg, 2006. doi:10.1007/3-540-28125-8_10.