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Lionel Simonot
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2020 – today
- 2023
- [c13]Vincent Duveiller, Arthur Gautheron, Anthony Cazier, Lionel Simonot, Raphaël Clerc, Jean-Pierre Salomon, Mathieu Hébert:
Estimation of the fluorescence emission spectrum of dental composite resin samples of varying thickness. Color Imaging: Displaying, Processing, Hardcopy, and Applications 2023: 190:1-190:7 - [c12]Fanny Dailliez, Mathieu Hébert, Lionel Simonot, Lionel Chagas, Thierry Fournel, Vincent Duveiller, Anne Blayo:
Impact of a coating layer on the appearance of various halftone patterns. Color Imaging: Displaying, Processing, Hardcopy, and Applications 2023: 204:1-204:7 - 2022
- [c11]Arthur Gautheron, Raphaël Clerc, Vincent Duveiller, Lionel Simonot, Bruno Montcel, Mathieu Hébert:
Light scattering in translucent layers: angular distribution and internal reflections at flat interfaces. Color Imaging: Displaying, Processing, Hardcopy, and Applications 2022: 221:1-221:6 - 2021
- [c10]Lionel Simonot, Philippe Colantoni, Mathieu Hébert:
Optimization of monochromatic primaries in RGB system: on the specific question of purples. Color Imaging: Displaying, Processing, Hardcopy, and Applications 2021: 1-8 - [c9]Mathieu Hébert, Fanny Dailliez, Lionel Simonot:
Why a clear coating modifies halftone color prints. Material Appearance 2021: 1-8 - [c8]Thomas Labardens, Pierre Chavel, Yvan Sortais, Mathieu Hébert, Lionel Simonot, Ana Rabal, Gaël Obein:
Study and simulations of speckle effects on BRDF measurements at very high angular resolution. Material Appearance 2021: 1-7 - [e3]Mathieu Hébert, Lionel Simonot, Aditya Suneel Sole, Ingeborg Tastl:
Material Appearance 2021, online, January 11-28, 2021. Society for Imaging Science and Technology 2021 [contents] - 2020
- [e2]Mathieu Hébert, Lionel Simonot, Ingeborg Tastl:
Material Appearance 2020, Burlingame, CA, USA, January 26-30, 2020. Society for Imaging Science and Technology 2020 [contents]
2010 – 2019
- 2019
- [j3]Mickaël Ribardière, Benjamin Bringier, Lionel Simonot, Daniel Méneveaux:
Microfacet BSDFs Generated from NDFs and Explicit Microgeometry. ACM Trans. Graph. 38(5): 143:1-143:15 (2019) - [c7]Dorian Saint-Pierre, Lionel Simonot, Mathieu Hébert:
Reflectance Computation for a Specular Only V-Cavity. CCIW 2019: 289-303 - [c6]Morgane Gerardin, Lionel Simonot, Jean-Philippe Farrugia, Jean-Claude Iehl, Thierry Fournel, Mathieu Hébert:
A translucency classification for computer graphics. Material Appearance 2019: 1-7 - [e1]Mathieu Hébert, Lionel Simonot, Ingeborg Tastl:
Material Appearance 2019, Burlingame, CA, USA, January 13-17, 2019. Society for Imaging Science and Technology 2019 [contents] - 2018
- [j2]Daniel Méneveaux, Benjamin Bringier, Emmanuelle Tauzia, Mickaël Ribardière, Lionel Simonot:
Rendering Rough Opaque Materials with Interfaced Lambertian Microfacets. IEEE Trans. Vis. Comput. Graph. 24(3): 1368-1380 (2018) - [c5]Dorian Saint-Pierre, Rada Deeb, Damien Muselet, Lionel Simonot, Mathieu Hébert:
Light Interreflections and Shadowing Effects in a Lambertian V-Cavity under Diffuse Illumination. Material Appearance 2018: 1-10 - [c4]Lionel Simonot, Mathieu Hébert:
Interactive RGB Transparency: a color rendering tool for superimposed translucent layers in digital images. Material Appearance 2018: 1-6 - 2017
- [j1]Mickaël Ribardière, Benjamin Bringier, Daniel Méneveaux, Lionel Simonot:
STD: Student's t-Distribution of Slopes for Microfacet Based BSDFs. Comput. Graph. Forum 36(2): 421-429 (2017) - [c3]Lionel Simonot, Mathieu Hébert, Serge Mazauric, Roger D. Hersch:
Assessing the proper color of translucent materials by an extended two-flux model from measurements based on an integrating sphere. Material Appearance 2017: 48-56 - [c2]Mickaël Ribardière, Daniel Méneveaux, Benjamin Bringier, Lionel Simonot:
Appearance of Interfaced Lambertian Microfacets, using STD Distribution. MAM@EGSR 2017: 1-4 - 2016
- [c1]Mathieu Hébert, Serge Mazauric, Lionel Simonot:
Assessing the capacity of two-flux models to predict the spectral properties of layered materials. Measuring, Modeling, and Reproducing Material Appearance 2016: 1-10
Coauthor Index
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