Interactive Diffraction from Biological Nanostructures
Date
2014Author
Dhillon, Daljit Singh
Teyssier, Jeremie
Single, Michael
Gaponenko, Iaroslav
Milinkovitch, Michel
Zwicker, Matthias
Metadata
Show full item recordAbstract
We describe a technique for interactive rendering of diffraction effects produced by biological nanostructures such as snake skin surface gratings. Our approach uses imagery from atomic force microscopy that accurately captures the nanostructures responsible for structural coloration, that is, coloration due to wave interference, in a variety of animals. We develop a rendering technique that constructs bidirectional reflection distribution functions (BRDFs) directly from the measured data and leverages precomputation to achieve interactive performance. We demonstrate results of our approach using various shapes of the surface grating nanostructures. Finally, we evaluate the accuracy of our precomputation-based technique and compare to a reference BRDF construction technique.
BibTeX
@inproceedings {10.2312:egp.20141064,
booktitle = {Eurographics 2014 - Posters},
editor = {Mathias Paulin and Carsten Dachsbacher},
title = {{Interactive Diffraction from Biological Nanostructures}},
author = {Dhillon, Daljit Singh and Teyssier, Jeremie and Single, Michael and Gaponenko, Iaroslav and Milinkovitch, Michel and Zwicker, Matthias},
year = {2014},
publisher = {The Eurographics Association},
ISSN = {1017-4656},
DOI = {10.2312/egp.20141064}
}
booktitle = {Eurographics 2014 - Posters},
editor = {Mathias Paulin and Carsten Dachsbacher},
title = {{Interactive Diffraction from Biological Nanostructures}},
author = {Dhillon, Daljit Singh and Teyssier, Jeremie and Single, Michael and Gaponenko, Iaroslav and Milinkovitch, Michel and Zwicker, Matthias},
year = {2014},
publisher = {The Eurographics Association},
ISSN = {1017-4656},
DOI = {10.2312/egp.20141064}
}