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Third-harmonic generation and scattering in combustion flames using a femtosecond laser filament

Coherent radiation in the ultraviolent (UV) range has high potential applicability to the diagnosis of the formation processes of soot in combustion because of the high scattering efficiency in the UV wavelength region, even though the UV light is lost largely by the absorption within the combustion...

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Published in:Optics letters 2018-02, Vol.43 (3), p.615-618
Main Authors: Zang, Hong-Wei, Li, He-Long, Su, Yue, Fu, Yao, Hou, Meng-Yao, Baltuška, Andrius, Yamanouchi, Kaoru, Xu, Huailiang
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Language:English
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cited_by cdi_FETCH-LOGICAL-c357t-a8cba861ff3d91eacfa6df72353d6fae7d0c66bfd28812626ff51368884e7a463
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container_issue 3
container_start_page 615
container_title Optics letters
container_volume 43
creator Zang, Hong-Wei
Li, He-Long
Su, Yue
Fu, Yao
Hou, Meng-Yao
Baltuška, Andrius
Yamanouchi, Kaoru
Xu, Huailiang
description Coherent radiation in the ultraviolent (UV) range has high potential applicability to the diagnosis of the formation processes of soot in combustion because of the high scattering efficiency in the UV wavelength region, even though the UV light is lost largely by the absorption within the combustion flames. We show that the third harmonic (TH) of a Ti:sapphire 800 nm femtosecond laser is generated in a laser-induced filament in a combustion flame and that the conversion efficiency of the TH varies sensitively by the ellipticity of the driver laser pulse but does not vary so much by the choice of alkanol species introduced as fuel for the combustion flames. We also find that the TH recorded from the side direction of the filament is the Rayleigh scattering of the TH by soot nanoparticles within the flame and that the intensity of the TH varies depending on the fuel species as well as on the position of the laser filament within the flame. Our results show that a remote and in situ measurement of distributions of soot nanoparticles in a combustion flame can be achieved by Rayleigh scattering spectroscopy of the TH generated by a femtosecond-laser-induced filament in the combustion flame.
doi_str_mv 10.1364/ol.43.000615
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title Third-harmonic generation and scattering in combustion flames using a femtosecond laser filament
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