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X-ray and ion emission studies from subnanosecond laser-irradiated SiO2 aerogel foam targets

机译:来自亚烷酮激光照射SiO2气凝胶泡沫靶标的X射线和离子排放研究

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In this experiment, a comparative study of ion and X-ray emission from both a SiO2 aerogel foam and a quartz target is performed. The experiment is performed using Nd:glass laser system operated at laser energy up to 15 J with a pulse duration of 500 ps with focusable intensity of 1013–1014 W/cm2 on target. X-ray fluxes in different spectral ranges (soft and hard) are measured by using X-ray diodes covered with Al filters of thickness 5 μm (0.9–1.56 keV) and 20 μm (3.4–16 keV). A 2.5 times enhancement in soft X-ray flux (0.9–1.56 keV) and a decrease of 1.8 times in hard X rays (3.4–16 keV) for 50 mg/cc SiO2 aerogel foam is observed compared with the solid quartz. A decrease in the flux of the K-shell line emission spectrum of soft X rays is noticed in the case of the foam targets. The high-resolution K-shell spectra (He-like) of Si ions in both the cases are analyzed for the determination of plasma parameters by comparing with FLYCHK simulations. The estimated plasma temperature and density are T c = 180 eV, n e = 7 × 1020 cm?3 and T c = 190 eV, n e = 4 × 1020 cm?3 for quartz and SiO2 aerogel foam, respectively. To measure the evolution of the plasma moving away from the targets, four identical ion collectors are placed at different angles (22.5, 30, 45, and 67.5°) from target normal. The angular distribution of the thermal ions are scaled as cosnθ with respect to target normal, where n = 3.8 and 4.8 for the foam and quartz, respectively. The experimental plasma volume measured from the ion collectors and shadowgraphy images are verified by a two-dimensional Eulerian radiative–hydrodynamic simulation (POLLUX code).
机译:在该实验中,进行来自SiO2气凝胶泡沫和石英靶的离子和X射线发射的对比研究。使用Nd:玻璃激光系统在激光能量下操作,高达15 j的玻璃激光系统进行,脉冲持续时间为500ps,目标上的聚焦强度为1013-1014W / cm2。通过使用厚度为5μm(0.9-1.56keV)和20μm(3.4-16kev)的铝过滤器覆盖的X射线二极管来测量不同光谱范围(软硬)的X射线通量。与固体石英相比,观察到软X射线通量(0.9-1.56 keV)中增强的2.5倍的硬X射线(3.4-16keV)的减小1.8倍。在泡沫靶标的情况下,注意到软X射线的k壳线发射光谱的磁通量的降低。通过比较捕获模拟来分析两种情况下Si离子的高分辨率k-shell光谱(HE样),用于测定等离子体参数。估计的等离子体温度和密度是T c = 180eV,n e = 7×1020cm≤3和tc = 190eV,分别用于石英和SiO2气凝孔的n e = 4×1020cmφ3。为了测量远离靶的等离子体的进化,四个相同的离子收集器从目标正常的不同角度(22.5,30,45和67.5°)放置。热离子的角度分布相对于目标正常,分别为泡沫和石英的N = 3.8和4.8分别缩放为COSNθ。由离子收集器和影像图像测量的实验等离子体体积由二维欧拉辐射 - 流体动力学模拟(Pollux代码)验证。

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