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Investigation of concentrically and eccentrically layered droplets by light scattering

机译:通过光散射研究同心和偏心分层的液滴

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Two pairs of immiscible liquid compounds are chosen to prepare levitated layered droplets with and without density difference between core and layer phases. The droplets are examined by light scattering along two orthogonal directions. A layered droplet without phase density difference is unambiguously identified as a concentric sphere by matching the observed scattering spectra with those calculated from the Aden-Kerker extension of Mie theory. For layered droplets with phase density difference, only the scattering spectrum from one of the scattering directions can be matched theoretically. These observations suggest that a static layered droplet is predominantly eccentric even though the embedded core is large by volume, as predicted from fluid mechanics. The consistency of the light-scattering characterization with the diffusion theory governing the evaporation of concentrically and eccentrically layered droplets is also established.
机译:选择两对不混溶的液体化合物,以制备在芯相和层相之间具有和不具有密度差异的悬浮层状液滴。通过沿两个正交方向的光散射检查液滴。通过将观察到的散射光谱与根据Mie理论的Aden-Kerker扩展计算得出的散射光谱进行匹配,可以将没有相密度差的分层液滴明确地识别为同心球。对于具有相密度差的分层液滴,理论上仅可以匹配来自散射方向之一的散射光谱。这些观察结果表明,根据流体力学的预测,即使嵌入式岩心的体积很大,静态的分层液滴也主要是偏心的。还建立了光散射特性与控制同心和偏心分层液滴蒸发的扩散理论的一致性。

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