Top-hat cw-laser-induced time-resolved mode-mismatched thermal lens spectroscopy for quantitative analysis of low-absorption materials

Thermal lens spectroscopy is a highly sensitive and versatile photothermal technique for material analysis, providing optical and thermal properties. To use less expensive multimode non-Gaussian lasers for quantitative analysis of low-absorption materials, this Letter presents a theoretical model fo...

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Veröffentlicht in:Optics letters 2008-07, Vol.33 (13), p.1464-1466
Hauptverfasser: ASTRATH, Nelson G. C, ASTRATH, Francine B. G, JUN SHEN, JIANQIN ZHOU, PEDREIRA, Paulo R. B, MALACARNE, Luis C, BENTO, Antonio C, BAESSO, Mauro L
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Sprache:eng
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Zusammenfassung:Thermal lens spectroscopy is a highly sensitive and versatile photothermal technique for material analysis, providing optical and thermal properties. To use less expensive multimode non-Gaussian lasers for quantitative analysis of low-absorption materials, this Letter presents a theoretical model for time-resolved mode-mismatched thermal lens spectroscopy induced by a cw laser with a top-hat profile. The temperature profile in a sample was calculated, and the intensity of the probe beam center at the detector plane was also derived using the Fresnel diffraction theory. Experimental validation was performed with glass samples, and the results were found well consistent with literature values of the thermo-optical properties of the samples.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.33.001464