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Rainbow refractrometry on particles with radial refractive index gradients
Authors:Sawitree Saengkaew  Tawatchai Charinpanitkul  Hathaichanok Vanisri  Wiwut Tanthapanichakoon  Yves Biscos  Nicolas Garcia  Gérard Lavergne  Loïc Mees  Gérard Gouesbet  Gérard Grehan
Institution:(1) UMR 6614/CORIA, CNRS/Université et INSA de Rouen, BP12, 76 800, Saint Etienne du Rouvray CEDEX, 801, France;(2) Center of Excellence in Particle Technology, Faculty of Engineering, Chulalongkorn University, Bangkok, 10330, Thailand;(3) ONERA/DMAE, 02 Avenue Edouard Belin, 31 055 Toulouse, France
Abstract:The rainbow refractrometry, under its different configurations (classical and global), is an attractive technique to extract information from droplets in evaporation such as diameter and temperature. Recently a new processing strategy has been developed which increases dramatically the size and refractive index measurements accuracy for homogeneous droplets. Nevertheless, for mono component as well as for multicomponent droplets, the presence of temperature and/or of concentration gradients induce the presence of a gradient of refractive index which affects the interpretation of the recorded signals. In this publication, the effect of radial gradient on rainbow measurements with a high accuracy never reached previously is quantified.
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