Instruments for best target position determination in the high-intensity laser-solid interaction experiment

E. Vishnyakov, A. Sagisaka, K. Ogura, T. Pikuz, C. Armstrong, S. Pikuz, B. González-Izquierdo, T. Esirkepov, Wenchao Yan, T. Jeong, Sushil Singh, P. Hadjisolomou, O. Finke, G. Grittani, M. Nevrkla, C. Lazzarini, A. Velyhan, T. Hayakawa, Y. Fukuda, J. Koga, M. Ishino, Kotaro Kondo, Y. Miyasaka, A. Kon, M. Nishikino, E. V. Nosach, D. Khikhlukha, I. Tsygvintsev, D. Kumar, J. Nejdl, D. Margarone, P. Sasorov, M. Kando, H. Kiriyama, G. Korn, K. Kondo, S. V. Bulanov, T. Kawachi, A. Pirozhkov
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Abstract

We review a number of instruments employed in a high-intensity J-KAREN-P laser-solid interaction experiment and discuss the applicability of the diagnostics to the best target position determination with a ~10 μm accuracy, while the focal spot size was ~1 μm and peak intensity was up to 7×1021 W/cm2. We discuss both front- and back-side diagnostics, some of them operated in the infrared, visible and ultraviolet ranges, while others in the extreme ultraviolet, soft X-ray and gamma-ray ranges. We found that the applicability of some of the instruments to the best at-focus target position determination depends on the thickness of the target.
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高强度激光-固体相互作用实验中最佳目标位置确定仪器
对高强度J-KAREN-P激光-固体相互作用实验中使用的几种仪器进行了综述,讨论了该诊断方法在焦斑尺寸为~1 μm、峰强度可达7×1021 W/cm2时,最佳目标位置确定精度为~10 μm的适用性。我们讨论了前部和后部的诊断,其中一些在红外、可见光和紫外线范围内操作,而另一些在极紫外线、软x射线和伽马射线范围内操作。我们发现,一些仪器对最佳聚焦目标位置确定的适用性取决于目标的厚度。
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