Ion time-of-flight signals from nanosecond laser ablation plasmas excited in constricted cavities

J. E. Hernandez, M. Wada
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引用次数: 1

Abstract

Ion time-of-flight spectra from nanosecond pulse laser ablation at 1064 nm wavelength of a graphite target under repeated 10 Hz pulse repetition are investigated. By injecting focused laser beams at 12° from the surface normal, the ablated target formed a vertical cavity as the target is rotated continuously. For increasing number of pulses, decrease in positive signals for positive ion extraction while increase in negative signals for both 5 and 20 GW/cm2 laser power densities at −3 kV extraction voltage were observed. Increase in voltage onto a positive ion retardation plate installed in front of the Faraday cup array showed distinct negative ion peaks with decrease in positive ion signal intensity. Time-of- flight signals under increased number of pulses with the positively biased retardation plate showed less pronounced negative ion peaks for 5 GW/cm2 at -3 kV extraction, whereas the peaks persisted for 20 GW/cm2 laser power density. The influence of target cavity development on the negative ion formation is discussed.
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窄腔内激发纳秒激光烧蚀等离子体的离子飞行时间信号
研究了在1064nm波长下重复10hz脉冲激光烧蚀石墨靶的离子飞行时间谱。通过在离表面法线12°处注入聚焦激光束,使烧蚀后的目标在连续旋转过程中形成垂直空腔。当脉冲数增加时,在- 3 kV提取电压下,5和20 GW/cm2激光功率密度下,正离子提取的正信号减少,而负信号增加。在法拉第杯阵列前安装的正离子阻滞板上增加电压后,正离子信号强度降低,负离子峰值明显。当脉冲数增加时,正偏置延迟板的飞行时间信号在-3 kV下,5 GW/cm2的负离子峰不明显,而在20 GW/cm2的激光功率密度下,负离子峰持续存在。讨论了靶腔发育对负离子形成的影响。
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