Photon Migration in Raman Spectroscopy
- 1 May 2004
- journal article
- Published by SAGE Publications in Applied Spectroscopy
- Vol. 58 (5) , 591-597
- https://doi.org/10.1366/000370204774103426
Abstract
Monte Carlo simulation has been applied to study time-resolved Raman and Tyndall photon migration in opaque samples under isotropic and forward scattering conditions. For isotropic scattering, Raman and Tyndall intensities are predicted to decay according to t(1– n) and t−n, respectively, where the value of n depends on the ratio of the optical collection aperture to the mean scattering length. The simulation correctly reproduced the analytical results of n = 3/2 and n = 5/2 for a point source in infinite and semi-infinite media, respectively. In addition the model can be used to relate the time at which a Raman photon exits the sample to the mean depth at which it was generated. This could provide a useful tool for depth profiling the chemical composition of turbid systems, and hence be a useful addition to the established array of photon-migration techniques. The model was applied to analyze experimentally observed Raman and Tyndall decay profiles from powdered trans-stilbene. The transport mean free path ( lt) was calculated to be ∼400 μm, which was significantly larger than the particle sizes present in the sample (∼10–100 μm). This implies that the particles were highly forward scattering, as would be expected for this size range. When highly anisotropic scattering was introduced into the model a much more reasonable scattering length ( ls ∼ 40 μm) was obtained. Finally, a simple analytical model was developed that gives the correct relationship between the Raman and Tyndall decay exponents for isotropic scattering. To the best of our knowledge this work represents the first detailed study of Raman photon migration under time-resolved conditions.Keywords
This publication has 12 references indexed in Scilit:
- Picosecond Time-Resolved Raman Spectroscopy of Solids: Capabilities and Limitations for Fluorescence Rejection and the Influence of Diffuse ReflectanceApplied Spectroscopy, 2001
- Photon transport in thin disordered slabsPramana, 2001
- Particle sizing in dense, rapidly flowing KCI suspensions by photon migration techniquesAIChE Journal, 2001
- Quantitative Measurements in Scattering Media: Photon Time-of-Flight Analysis with Analytical DescriptorsApplied Spectroscopy, 1999
- Distribution of the paths of early-arriving photons traversing a turbid mediumApplied Optics, 1998
- The continuous-time random walk description of photon motion in an isotropic mediumOptics Communications, 1998
- Time-resolved fluorescence and photon migration studies in biomedical and model random mediaReports on Progress in Physics, 1997
- MCML—Monte Carlo modeling of light transport in multi-layered tissuesComputer Methods and Programs in Biomedicine, 1995
- Three-dimensional imaging of objects embedded in turbid media with fluorescence and Raman spectroscopyApplied Optics, 1995
- Model for photon migration in turbid biological mediaJournal of the Optical Society of America A, 1987