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Droplet characteristic measurement in Fourier interferometry imaging and behavior at the rainbow angle

机译:傅里叶干涉成像中的液滴特性测量和彩虹角下的行为

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摘要

This paper presents the possibility of measuring the three-dimensional (3D) relative locations and diameters of a set of spherical particles and discusses the behavior of the light recorded around the rainbow angle, an essential step toward refractive index measurements. When a set of particles is illuminated by a pulsed incident wave, the particles act as spherical light wave sources. When the pulse duration is short enough to fix the particle location (typically about 10 ns), interference fringes between these different spherical waves can be recorded. The Fourier transform of the fringes divides the complex fringe systems into a series of spots, with each spot characterizing the interference between a pair of particles. The analyses of these spots (in position and shape) potentially allow the measurement of particle characteristics (3D relative position, particle diameter, and particle refractive index value).
机译:本文提出了测量一组球形颗粒的三维(3D)相对位置和直径的可能性,并讨论了围绕彩虹角记录的光的行为,这是实现折射率测量的重要步骤。当一组粒子被脉冲入射波照射时,这些粒子充当球形光源。当脉冲持续时间足够短以固定粒子位置(通常约为10 ns)时,可以记录这些不同球面波之间的干涉条纹。条纹的傅里叶变换将复杂的条纹系统分为一系列斑点,每个斑点代表一对粒子之间的干涉。对这些斑点(位置和形状)的分析可能允许测量颗粒特征(3D相对位置,粒径和颗粒折射率值)。

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