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Ultrashort-laser-pulse-induced thermal lensing effect in pure H 2 O and a NaCl–H 2 O solution

Using the Z -scan technique with 82 MHz 18 femtosecond (fs) laser pulses at 820 nm, we explore the thermal lensing effect induced in pure H 2 O and a NaCl–H 2 O solution. We verify that linear absorption dominates over both two-photon absorption and stimulated light scattering (SLS) in heating of pu...

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Bibliographic Details
Published in:RSC advances 2016, Vol.6 (115), p.114727-114737
Main Authors: Li, Yi-Ci, Kuo, Yu-Ting, Huang, Po-Yuan, Lee, Cheng-I., Wei, Tai-Huei
Format: Article
Language:English
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Summary:Using the Z -scan technique with 82 MHz 18 femtosecond (fs) laser pulses at 820 nm, we explore the thermal lensing effect induced in pure H 2 O and a NaCl–H 2 O solution. We verify that linear absorption dominates over both two-photon absorption and stimulated light scattering (SLS) in heating of pure H 2 O. This differs from the situation wherein SLS dominates heating of CS 2 . In addition, when dissolution of NaCl into H 2 O at a concentration of 1 M incorporates thermal and mass diffusions into the mechanisms of the thermal lensing effect, we find that this effect is enhanced and thus determine that the sign of the Soret coefficient of NaCl is positive. Notably, use of 820 nm 18 fs laser pulses in this study, in contrast to visible continuous light commonly used in the thermal diffusion forced Rayleigh scattering technique embedded with the optical heterodyne detection scheme, eliminates the need to add inert dyes into NaCl–H 2 O to enhance the absorption. This avoids the artefact caused by the dyes.
ISSN:2046-2069
2046-2069
DOI:10.1039/C6RA24361D