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Homogeneous nucleation rates of supercooled water measured in single levitated microdroplets

机译:在单个悬浮微滴中测量的过冷水的均匀成核速率

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Homogeneous nucleation rates are determined for micrometer sized water droplets levitated inside an electrodynamic Paul-trap. The size of a single droplet is continuously measured by analyzing the angle-resolved light scattering pattern of the droplets with classical Mie theory. THe freezing process is detected by a pronounced increase in the depolarization of the scattered light. By statistical analysis of the freezing process of some thousand individual droplets, we obtained the homogeneous nucleation rate of water between 236 and 237 K. The values are in agreement with former expansion cloud chamber measurements but could be determined with considerably higher precision. The measurements are discussed in the light of classical nucleation theory in order to obtain the size and the formation energy of the critical nucleus.
机译:确定悬浮在电动Paul捕集阱内的微米级水滴的均匀成核速率。通过使用经典Mie理论分析液滴的角度分辨光散射图案,可以连续测量单个液滴的大小。通过散射光的去极化显着增加来检测冻结过程。通过对数千个小滴的冻结过程的统计分析,我们得出了236 K和237 K之间的均匀水成核速率。该值与以前的膨胀云室测量值一致,但可以以更高的精度确定。为了获得临界核的大小和形成能,根据经典的成核理论讨论了测量方法。

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