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Communication: the formation of helium cluster cations following the ionization of helium nanodroplets: influence of droplet size and dopant.

机译:交流:氦纳米液滴电离后氦簇阳离子的形成:液滴尺寸和掺杂剂的影响。

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摘要

The He(n)(+)/He(2)(+) (n ≥ 3) signal ratios in the mass spectra derived from electron impact ionization of pure helium nanodroplets are shown to increase with droplet size, reaching an asymptotic limit at an average droplet size of approximately 50,000 helium atoms. This is explained in terms of a charge hopping model, where on average the positive charge is able to penetrate more deeply into the liquid helium as the droplet size increases. The deeper the point where the charge localizes to form He(2)(+), the greater the likelihood of collisions with the surrounding helium as the ion begins to leave the droplet, thus increasing the probability that helium will be ejected in the form of He(n)(+) (n ≥ 3) cluster ions rather than He(2)(+). The addition of a dopant alters the He(n)(+)/He(2)(+) ratio for small helium droplets, an observation attributed to the potential energy gradient created by the cation-dopant interaction and its effect in drawing the positive charge towards the dopant in the interior of the droplet.
机译:从纯氦纳米液滴的电子碰撞电离得到的质谱图中,He(n)(+)/ He(2)(+)(n≥3)信号比随液滴尺寸的增加而增大,在平均液滴尺寸约为50,000个氦原子。这是根据电荷跳跃模型来解释的,其中平均电荷随着液滴大小的增加而能够更深地渗透到液氦中。电荷局部形成He(2)(+)的点越深,当离子开始离开液滴时与周围氦气发生碰撞的可能性就越大,从而增加了氦气以氢的形式喷射的可能性。 He(n)(+)(n≥3)团簇离子,而不是He(2)(+)。掺杂剂的添加改变了小氦滴的He(n)(+)/ He(2)(+)比率,这种观察归因于阳离子-掺杂剂相互作用产生的势能梯度及其在吸引正电荷中的作用。向液滴内部的掺杂剂充电。

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