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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Tailoring Ion Charge State Distribution in Tetramethyltin Clusters under Influence of Moderate Intensity Picosecond Laser Pulse: Role of Laser Wavelength and Rate of Energy Deposition
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Tailoring Ion Charge State Distribution in Tetramethyltin Clusters under Influence of Moderate Intensity Picosecond Laser Pulse: Role of Laser Wavelength and Rate of Energy Deposition

机译:在中等强度PICOSECOND激光脉冲的影响下剪裁离子电荷状态分布,在中等强度皮秒激光脉冲的作用:激光波长的作用和能量沉积速率

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摘要

Systematic manipulation of ionic-outcome in laser-cluster interaction process has been realized for studies carried out on tetramethyltin (TMT) clusters under picosecond laser conditions, determined by choice of laser wavelength and intensity. As a function of laser intensity, TMT clusters exhibit gradual enhancement in overall ionization of its cluster constituents, up to a saturation level of ionization, which was distinct for different wavelengths (266, 355, and 532 nm). Simultaneously, systematic appearance of higher multiply charged atomic ions and shift in relative abundance of multiply charged atomic ions towards higher charge state was observed, using time-of-flight mass spectrometer. At saturation level, multiply charged atomic ions up to (C2+, Sn2+) at 266 nm, (C4+, Sn4+) at 355 nm, and (C4+, Sn6+) at 532 nm were detected. In addition, at 355 nm intra-cluster ion chemistry within the ionized cluster leads to generation of molecular hydrogen ion (H-2 (+)) and triatomic molecular hydrogen ion (H-3 (+)). Generation of multiply charged atomic ions is ascribed to efficient coupling of laser pulse with the cluster media, facilitated by inner-ionized electrons produced within the cluster, at the leading edge of laser pulse. Role of inner-ionized electrons is authenticated by measuring kinetic energy distribution of electrons liberated upon disintegration of excessively ionized cluster, under the influence of picosecond laser pulse.
机译:已经实现了激光簇相互作用过程中的离子结果的系统操作,以通过选择激光波长和强度的选择来确定在吡突激光条件下对四甲基锡(TMT)簇进行的研究。作为激光强度的函数,TMT簇在其簇成分的整体电离中表现出逐渐增强,直到不同波长(266,355和532nm的离子化的饱和水平。同时,使用飞行时间质谱仪,观察到同时进行更高乘以带电原子离子和相对充电原子离子的相对充电原子离子的相对丰富的变化。在饱和水平下,检测到在532nm处的355nm,(C4 +,SN4 +)的266nm,(C4 +,SN4 +)的乘以(C2 +,SN2 +)的带电原子离子,并在532nm处。另外,在离子化簇内的355nm内部聚簇离子化学导致分子氢离子(H-2(+))和三族语分子氢离子(H-3(+))的产生。多电荷原子离子的产生归因于激光脉冲的激光脉冲的有效耦合,通过在簇内产生的内部电离电子,在激光脉冲的前缘处促进。在PICOSECOND激光脉冲的影响下,通过测量在过离子簇的崩解时释放的电子的动能分布来认证内部电离电子的作用。

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