Improved detection sensitivity of D-mannitol crystalline phase content using differential spectral phase shift terahertz spectroscopy measurements

Allard, Jean-François;Cornet, Alain;Debacq, Christopher;Meurens, Marc;Morris, Denis;et.al.
(2011) Optics Express — Vol. 19, n° 5, p. 4644-4652 (2011)

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Authors
  • Allard, Jean-FrançoisUniversité de Sherbrooke
    Author
  • Cornet, AlainUCLouvain
    Author
  • Debacq, ChristopherGlaxoSmithKline Biologicals
    Author
  • Meurens, MarcUCLouvain
    Author
  • Morris, DenisUniversité de Sherbrooke
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Abstract
We report quantitative measurement of the relative proportion of δ- and β-D-mannitol crystalline phases inserted into polyethylene powder pellets, obtained by time-domain terahertz spectroscopy. Nine absorption bands have been identified from 0.2 THz to 2.2 THz. The best quantification of the δ-phase proportion is made using the 1.01 THz absorption band. Coherent detection allows using the spectral phase shift of the transmitted THz waveform to improve the detection sensitivity of the relative δ-phase proportion. We argue that differential phase shift measurements are less sensitive to samples' defects. Using a linear phase shift compensation for pellets of slightly different thicknesses, we were able to distinguish a 0.5% variation in δ-phase proportion.
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Citations

Allard, J.-F., Cornet, A., Debacq, C., Meurens, M., Houde, D., & Morris, D. (2011). Improved detection sensitivity of D-mannitol crystalline phase content using differential spectral phase shift terahertz spectroscopy measurements. Optics Express, 19(5), 4644-4652. https://doi.org/10.1364/OE.19.004644 (Original work published 2011)