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Review of Studies of Ion Streams Produced by Short High-Intensity Laser Pulses Performed by The IPPLM Team

机译:由IPPLM团队执行的短高强度激光脉冲产生的离子流研究

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The paper presents a review of recent studies of plasmas produced in various experimental conditions performed mainly at the IPPLM and partially at the PALS Joint Research Laboratory ASCR in Prague in an international cooperation. These investigations were directed towards the clarification of the physical processes in such plasmas as well as at the optimization of sources of multi-charged ions for various applications. A 1-ps terawatt Nd:glass laser system (pulse energy up to 1 J, wavelength: 1053 nm, power density up to 10~(17) W/cm~2) was employed for the experiments carried out at the IPPLM in Warsaw. Also, an option of this system operating with the 0.5 ns pulse (power density up to 10~(14) W/cm~2) for comparative studies was used. In common experiments at the PALS JRL in Prague we used the PALS iodine laser system producing up to 1.2 kJ in a 0.4 ns pulse at 1315 nm wavelength or 0.25 kJ at 438 nm (third harmonic) wavelengths. The time-of-flight measuring systems namely: different ion collectors and an electrostatic ion energy anlayzer were employed as main diagnostic methods. The properties of ion emission were investigated at various experimental conditions with the use of different massive and thin foil targets.
机译:本文提出了近期对主要在IPPLM进行的各种实验条件中产生的等离子体研究的综述,部分在国际合作中的布拉格PALS联合研究实验室ascr。这些调查旨在澄清这种等离子体中的物理过程,以及各种应用的多电荷离子的优化。 1-PS Terawatt Nd:玻璃激光系统(脉冲能量高达1 J,波长:1053nm,功率密度高达10〜(17)W / cm〜2)用于在华沙的IPPLM中进行的实验。此外,使用与0.5ns脉冲(高达10〜(14)W / cm〜2)的0.5ns脉冲操作的该系统的选项用于比较研究。在布拉格的PALS JRL的常见实验中,我们使用了在4315nm波长或0.25kj的0.4ns脉冲中产生高达1.2kj的PAL碘激光系统,在438nm(三次谐波)波长下。飞行时间测量系统即:不同的离子收集器和静电离子能量Anlayzer作为主要的诊断方法。在各种实验条件下研究了离子排放的性质,使用不同的大规模和薄的箔靶。

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