Cite this article:
Zhe Liu, Bo Yang, Hong-Liang Zhao, Zhan-Long Li, Zhi-Wei Men, Xiao-Feng Wang, Ning Wang, Xian-Wen Cao, Sheng-Han Wang, Cheng-Lin Sun. Forward-headed structure change of acetic acid-water binary system by stimulated Raman scatteringJ. Chin. Phys. B, 2019, 28(9): 094206.
| Zhe Liu, Bo Yang, Hong-Liang Zhao, Zhan-Long Li, Zhi-Wei Men, Xiao-Feng Wang, Ning Wang, Xian-Wen Cao, Sheng-Han Wang, Cheng-Lin Sun. Forward-headed structure change of acetic acid-water binary system by stimulated Raman scatteringJ. Chin. Phys. B, 2019, 28(9): 094206. |
Forward-headed structure change of acetic acid-water binary system by stimulated Raman scattering
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Abstract
The acetic acid-water binary system is a classical hydroxy-carboxy mixed system, while new and interesting phenomena appear under stimulated Raman scattering (SRS). Compared with the weaker signal of the acetic acid-water binary system obtained in spontaneous Raman scattering, SRS provides a finer band and a relatively distinct structural transition point. The structural transformation points are respectively at 30% and 80% by volume ratio under the condition of spontaneous Raman spectroscopy, while they are respectively at 15% and 25% under the condition of SRS. This phenomenon is attributed to the generation of laser induced plasma and shockwave induced dynamic high pressure environment during SRS. -
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