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Updated: Jun 19, 2026

Characterization of Biological Absorption Spectra Spanning the Visible to the Short-Wave Infrared
Published on: January 10, 2025
Using integrating spheres as absorption cells: path-length distribution and application of Beer's law
Jane Hodgkinson1, Dackson Masiyano, Ralph P Tatam
1Engineering Photonics Group, School of Engineering, Cranfield University, Bedfordshire MK43 0AL, UK. j.hodgkinson@cranfield.ac.uk
Abstract:
We have modeled the path-length distribution in an integrating sphere used as a multipass optical cell for absorption measurements. The measured radiant flux as a function of analyte concentration is nonlinear as a result, deviating from that expected for a single path length. We have developed a full numerical model and introduce a new analytical relationship that describes this behavior for high reflectivity spheres. We have tested both models by measuring the optical absorption of methane at 1651 nm in a 50 mm diameter sphere, with good agreement with experimental data in the absorption range of 0-0.01 cm(-1). Our results compare well with previous work on the temporal response of integrating spheres.
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