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Coulomb fission event resolved progeny droplet production from isolated evaporating methanol droplets

机译:库仑裂变事件解决了由孤立的蒸发甲醇液滴产生的子代液滴的产生

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An electrodynamic balance was used to levitate a single methanol droplet while it evaporated down to, and just beyond, its first encountered Coulomb fission limit as ascertained by the time dependence of its laser light scatter signal. At its Coulomb limit, the primary droplet fragmented and similar to 81% of its net charge was released in the form of small droplets that are termed progeny. The window of time over which the progeny droplets were ejected from the electrodynamic balance was Deltat = 850 ms, indicating that these droplets were formed with a range of mass-to-charge values. An average of 13.2 (+/-4.4) progeny droplets were detected as a result of this fragmentation event. On the assumption that the average initial radius of the progeny droplets were one-tenth the radius of the droplet undergoing the Coulomb fission event, similar to 50% of the total net charge ejected would not have been carried by the 13 progeny droplets detected.
机译:用电动平衡器使单个甲醇液滴悬浮,同时将其蒸发至并刚好超过其第一次遇到的库仑裂变极限,该极限由其激光散射信号的时间依赖性确定。在其库仑极限下,破碎的初生液滴以接近其净电荷的81%的形式以称为子代的小液滴形式释放。从电动平衡中喷射出子代液滴的时间窗口为Deltat = 850 ms,表明这些液滴是在一定范围的质荷值范围内形成的。由于该断裂事件,平均检测到13.2(+/- 4.4)个子代飞沫。假设子代液滴的平均初始半径是经历库仑裂变事件的液滴半径的十分之一,则所检测到的13个子代液滴将不会携带所喷射的总净电荷的50%。

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