Presentation 2014-07-11
Ripplon Spectroscopic Study on Thermally Non-equilibrium Liquid Surface
Toshiyuki KOGA, Shujiro MITANI, Keiji SAKAI,
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Abstract(in English) Asymmetric ripplon power spectra, where the Stokes and anti-Stokes components have different peak heights, can be observed for the liquid surface under the temperature gradient with the light scattering technique. In this work, we applied the ripplon spectroscopy technique to observe the ripplon propagation under the temperature gradient without Marangoni convection on the surface. Also, we estimated asymmetric parameter Θ using a simple way, which was based on the concept of the capillary wave propagation with a temperature gradient.
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Keyword(in English) ripplon / number density / asymmetric parameter / Marangoni convection / thermally non-equilibrium steady state
Paper # US2014-27
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Committee US
Conference Date 2014/7/4(1days)
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Language JPN
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Title (in English) Ripplon Spectroscopic Study on Thermally Non-equilibrium Liquid Surface
Sub Title (in English)
Keyword(1) ripplon
Keyword(2) number density
Keyword(3) asymmetric parameter
Keyword(4) Marangoni convection
Keyword(5) thermally non-equilibrium steady state
1st Author's Name Toshiyuki KOGA
1st Author's Affiliation Institute of Industrial Science, the University of Tokyo()
2nd Author's Name Shujiro MITANI
2nd Author's Affiliation Institute of Industrial Science, the University of Tokyo
3rd Author's Name Keiji SAKAI
3rd Author's Affiliation Institute of Industrial Science, the University of Tokyo
Date 2014-07-11
Paper # US2014-27
Volume (vol) vol.114
Number (no) 137
Page pp.pp.-
#Pages 5
Date of Issue