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High-Resolution Electron Attachment to the Water DimerEmbedded in Helium Droplets: Direct Observation of the ElectronicConduction Band Formation

机译:水二聚体的高分辨率电子附件嵌入氦气滴中:直接观察电子导带形成

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摘要

For bulk liquid helium the bottom of the conduction band (V0) is above the vacuum level. In this case the surface of the liquid represents an electronic surface barrier for an electron to be injected into the liquid. Here we study the electronic conduction band for doped helium droplets of different sizes. Utilizing an electron monochromator, the onset of the (H2O)2 ion yield corresponding to V0 is determined for helium droplets doped with the water dimer. While for larger droplets the onset approaches the well-known bulk value of about 1 eV, the barrier does not continuously decrease with smaller droplet size. A minimum value of V0 = 0.76 ± 0.10 eV is observed, which corresponds to a droplet size of Nmin = 1600 ± 900. For droplet sizes below Nmin, a peak at ∼0 eV appears, which is well-known from neat H2O clusters. Hence, we interpret Nmin as the smallest droplet size in which the electronic band structure is formed in liquid helium droplets.
机译:对于大量液氦,导带(V0)的底部高于真空水平。在这种情况下,液体的表面代表电子表面阻挡层,用于将电子注入到液体中。在这里,我们研究了不同大小的掺杂氦滴的电子导带。利用电子单色仪,可以确定掺杂有水二聚体的氦滴的开始对应于V0的(H2O)2 离子产率的开始。虽然对于较大的液滴,起始点接近众所周知的约1 eV的体积值,但势垒不会随着较小的液滴大小而连续降低。观察到最小值V0 = 0.76±0.10 eV,它对应于Nmin = 1600±900的液滴尺寸。对于小于Nmin的液滴尺寸,出现一个〜0 eV的峰,这是从纯净的H2O簇中众所周知的。因此,我们将Nmin解释为在液氦液滴中形成电子能带结构的最小液滴尺寸。

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