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Dependence of ion kinetic energy and charge on cluster size in multi-photon ionization of xenon clusters

机译:氙团簇的多光子电离中离子动能和电荷对团簇尺寸的依赖

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摘要

Multi-photon ionization of xenon clusters created by nozzle expansion has been investigated by time-of- flight mass spectrometry. With infrared irradiation, cluster ions beyond the dimer are missing from the mass spectra, but there is a copious yield of multiply-charged atomic ions. With ultraviolet irradiation, multiple ionization is almost completely suppressed and singly ionized large cluster ions are detected. The mean cluster ion size under UV ionization shows an increasing trend with the stagnation pressure for nozzle expansion, as do the mean charge state and kinetic energy of atomic ions formed via IR irradiation. Interrogating the same cluster population by two different probes provides a corroboration between the effect of the size of the cluster in the ionization mechanism and the kinematic effects thereof. Furthermore, it provides evidence for the influence of the neutral cluster size on the formation of multiply charged ions by IR irradiation via the electron re-collision mechanism.
机译:通过飞行时间质谱法研究了由喷嘴膨胀产生的氙气团簇的多光子电离。使用红外辐射时,质谱图中会丢失二聚体以外的簇离子,但是会产生大量带多个电荷的原子离子。通过紫外线照射,几乎可以完全抑制多重电离,并且可以检测到单个电离的大簇离子。随着喷嘴膨胀的停滞压力,UV电离下的平均簇离子尺寸显示出增加的趋势,通过IR辐射形成的原子离子的平均电荷态和动能也显示出增加的趋势。通过两种不同的探针询问相同的簇群种群,在电离机理中簇群大小的影响及其运动学效应之间提供了一种佐证。此外,它提供了证据,证明中性团簇大小对通过电子再碰撞机制进行红外辐射形成多重电荷离子的影响。

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