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Ultrafast ionization and subsequent coulomb explosion of zirconium oxide and tungsten carbide 'superatomic' cluster species and comparison to group 10 metals

机译:超快电离和随后的氧化锆和碳化钨“超原子”簇物种的库仑爆炸,并与第10组金属进行比较

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摘要

Ultrafast pulses centered at 624 nm are used to explore the ionization behavior of small zirconium oxide, palladium oxide, tungsten carbide, and platinum clusters. Zr_xO_y and W_xC_y have been identified as "superatom" species as they are isovalent with Pd_xO_y, and Pt_xC_y clusters, respectively. Intensity selective scanning (ISS) technique is used to study the high charge states of each metal as a function of laser intensity. The ion signals of each atomic charge state are compared to those predicted from semi-classical atomic tunneling theory using sequential ionization potentials. A clear difference in ion signal appearance potentials is observed in early-group transition metal clusters vs. late transition metal clusters, indicating the significance of the d-orbitals in the overall ionization behavior of these clusters. The ionization behavior of each cluster species is explored in the context of transition metal clusters.
机译:使用以624 nm为中心的超快脉冲来研究小型氧化锆,氧化钯,碳化钨和铂簇的电离行为。 Zr_xO_y和W_xC_y已被识别为“超原子”物种,因为它们分别与Pd_xO_y和Pt_xC_y簇等价。强度选择扫描(ISS)技术用于研究每种金属的高电荷态,它们是激光强度的函数。使用顺序电离电势,将每个原子电荷状态的离子信号与根据半经典原子隧穿理论预测的离子信号进行比较。在早期的过渡金属簇与晚期的过渡金属簇中观察到离子信号出现电位的明显差异,表明d-轨道在这些簇的整体电离行为中的重要性。在过渡金属簇的背景下探索了每个簇物种的电离行为。

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