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一种用于桑迪亚国家实验室Z脉冲功率设施中双帧、双色背光照明的7.2 keV球形X射线晶体背光源。

A 7.2 keV spherical x-ray crystal backlighter for two-frame, two-color backlighting at Sandia's Z Pulsed Power Facility.

作者信息

Schollmeier M S, Knapp P F, Ampleford D J, Harding E C, Jennings C A, Lamppa D C, Loisel G P, Martin M R, Robertson G K, Shores J E, Smith I C, Speas C S, Weis M R, Porter J L, McBride R D

机构信息

Sandia National Laboratories, Albuquerque, New Mexico 87185, USA.

出版信息

Rev Sci Instrum. 2017 Oct;88(10):103503. doi: 10.1063/1.4994566.

Abstract

Many experiments on Sandia National Laboratories' Z Pulsed Power Facility-a 30 MA, 100 ns rise-time, pulsed-power driver-use a monochromatic quartz crystal backlighter system at 1.865 keV (Si He) or 6.151 keV (Mn He) x-ray energy to radiograph an imploding liner (cylindrical tube) or wire array z-pinch. The x-ray source is generated by the Z-Beamlet laser, which provides two 527-nm, 1 kJ, 1-ns laser pulses. Radiographs of imploding, thick-walled beryllium liners at convergence ratios C above 15 [C=r(0)/r(t)] using the 6.151-keV backlighter system were too opaque to identify the inner radius r of the liner with high confidence, demonstrating the need for a higher-energy x-ray radiography system. Here, we present a 7.242 keV backlighter system using a Ge(335) spherical crystal with the Co He resonance line. This system operates at a similar Bragg angle as the existing 1.865 keV and 6.151 keV backlighters, enhancing our capabilities for two-color, two-frame radiography without modifying the system integration at Z. The first data taken at Z include 6.2-keV and 7.2-keV two-color radiographs as well as radiographs of low-convergence (C about 4-5), high-areal-density liner implosions.

摘要

桑迪亚国家实验室的Z脉冲功率设施(一种30兆安、上升时间为100纳秒的脉冲功率驱动器)上进行的许多实验,使用能量为1.865千电子伏(硅氦)或6.151千电子伏(锰氦)的单色石英晶体背光源系统,对内爆衬管(圆柱形管)或丝阵z箍缩进行射线照相。X射线源由Z-Beamlet激光器产生,该激光器提供两个527纳米、1千焦、1纳秒的激光脉冲。使用6.151千电子伏背光源系统对收敛比C大于15 [C=r(0)/r(t)] 的内爆厚壁铍衬管进行射线照相时,衬管过于不透明,无法高置信度地确定其内径r,这表明需要更高能量的X射线照相系统。在此处,我们展示了一种使用Ge(335) 球形晶体并带有钴氦共振线的7.242千电子伏背光源系统。该系统的布拉格角与现有的1.865千电子伏和6.151千电子伏背光源相似,在不改变Z处系统集成的情况下增强了我们进行双色、双帧射线照相的能力。在Z处获取的首批数据包括6.2千电子伏和7.2千电子伏的双色射线照片以及低收敛(C约为-4至-5)、高面密度衬管内爆的射线照片。

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