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  4. A Physically Plausible Model for Rendering Highly Scattering Fluorescent Participating Media
 
preprint

A Physically Plausible Model for Rendering Highly Scattering Fluorescent Participating Media

Abdellah, Marwan  
•
Bilgili, Ahmet  
•
Eilemann, Stefan
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2017

We present a novel extension of the path tracing algorithm that is capable of treating highly scattering participating media in the presence of fluorescent structures. The extension is based on the formulation of the full radiative transfer equation when solved on a per-wavelength-basis, resulting in accurate model and unbiased algorithm for rendering highly scattering fluorescent participating media. The model accounts for the intrinsic properties of fluorescent dyes including their absorption and emission spectra, molar absorptivity and quantum yield and also their concentration. Our algorithm is applied to render highly scattering isotropic fluorescent solutions under different illumination conditions. The spectral performance of the model is validated against emission spectra of different fluorescent dyes that are of significance in spectroscopy. 18 pages, 7 figures, conference

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Type
preprint
DOI
10.48550/arxiv.1706.03024
Author(s)
Abdellah, Marwan  
Bilgili, Ahmet  
Eilemann, Stefan
Markram, Henry  
Schürmann, Felix  
Date Issued

2017

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
BBP-CORE  
Available on Infoscience
May 8, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/197553
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