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High-energy K alpha radiography using high-intensity, short-pulse lasers

机译:使用高强度短脉冲激光的高能K alpha射线照相

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The characteristics of 22-40 keV K alpha x-ray sources are measured. These high-energy sources are produced by 100 TW and petawatt high-intensity lasers and will be used to develop and implement workable radiography solutions to probe high-Z and dense materials for the high-energy density experiments. The measurements show that the K alpha source size from a simple foil target is larger than 60 mu m, too large for most radiography applications. The total K alpha yield is independent of target thicknesses, verifying that refluxing plays a major role in photon generation. Smaller radiating volumes emit brighter K alpha radiation. One-dimensional radiography experiments using small-edge-on foils resolved 10 mu m features with high contrast. Experiments were performed to test a variety of small volume two-dimensional point sources such as cones, wires, and embedded wires, measured photon yields, and compared the measurements with predictions from hybrid-particle-in-cell simulations. In addition to high-energy, high-resolution backlighters, future experiments will also need imaging detectors and diagnostic tools that are workable in the high-energy range. An initial look at some of these detector issues is also presented. (c) 2006 American Institute of Physics.
机译:测量了22-40 keV KαX射线源的特性。这些高能光源由100 TW和petawatt高强度激光产生,将用于开发和实施可行的射线照相解决方案,以探测高Z和致密材料以进行高能密度实验。测量结果表明,来自简单箔靶的K alpha光源尺寸大于60微米,对于大多数放射成像应用而言太大。总的K alpha产量与目标厚度无关,这证明回流在光子产生中起主要作用。较小的辐射量会发出更亮的K alpha辐射。使用小边缘箔片进行的一维射线照相实验可分辨10微米高对比度的特征。进行实验以测试各种小体积的二维点源,例如圆锥体,金属丝和嵌入的金属丝,测量光子产量,并将测量结果与细胞内混合颗粒模拟的预测结果进行比较。除了高能,高分辨率背光源之外,未来的实验还将需要在高能范围内可用的成像检测器和诊断工具。还初步介绍了其中一些检测器问题。 (c)2006年美国物理研究所。

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