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Published on: October 9, 2014
The paradox of steady-state light diffusion
Andre Liemert1, Lorenzo Pattelli2, Alwin Kienle1
1Institur fuer Lasertechnologien in der Medizin und Messtecknik, Helmholtzstr. 12, Ulm, D-89081, Germany.
The diffusion coefficient in light transport is debated, but this study proves the absorption-independent definition is essential for time-domain accuracy. Continuous-wave models fail to reconcile diffusion with the radiative transfer equation when absorption is present.
Area of Science:
- * Physics
- * Optics
- * Applied Mathematics
Background:
- * The definition of the diffusion coefficient in light transport has been debated for over 30 years.
- * The canonical expression includes absorption dependence, violating the radiative transfer equation's (RTE) scaling properties.
- * Absorption-dependent formulations are common in practical data analysis despite evidence favoring absorption-independent definitions in the time domain.
Purpose of the Study:
- * To resolve the controversy surrounding the diffusion coefficient's definition in light transport.
- * To establish a rigorous consistency test based on diffusion converging to the RTE in the limit of infinite propagation.
- * To determine the correct formulation for both time-domain and continuous-wave regimes.
Main Methods:
- * An exact consistency test was developed, requiring diffusion to converge to the RTE in the limit of infinite propagation.
- * Analytical methods were used to prove convergence properties in both time-domain and continuous-wave regimes.
- * The intrinsic error introduced by incorrect parameterizations was quantified in idealized scenarios.
Main Results:
- * In the time domain, the absorption-independent diffusion coefficient is proven to be necessary and sufficient for exact long-time convergence to the RTE.
- * In the continuous-wave regime, no scalar diffusion coefficient can make diffusion asymptotically equivalent to the RTE when absorption is non-zero.
- * Mismatches in attenuation length and residue highlight the asymptotic failure of diffusion models with absorption.
Conclusions:
- * The time-domain, absorption-independent formulation is the only self-consistent reference for light transport diffusion.
- * Continuous-wave diffusion models with non-zero absorption are fundamentally inconsistent with the RTE.
- * A re-examination of diffusion's application in optical transport studies is warranted, particularly regarding parameterization choices.
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