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Generation of uniform transverse beam distributions for high-energy electron radiography

机译:高能电子造影的均匀横梁分布

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摘要

High-energy electron radiography (HEER) has been proposed for time-resolved imaging of materials, high-energy density matter, and for inertial confinement fusion. The areal-density resolution, determined by the image intensity information is critical for these types of diagnostics. Preliminary experimental studies for different materials with the same thickness and the same areal-density target have been imaged and analyzed. Although there are some discrepancies between experimental and theory analysis, the results show that the density distribution can indeed be attained from HEER. The reason for the discrepancies has been investigated and indicates the importance of the uniformity in the transverse distribution beam illuminating the target. Furthermore, the method for generating a uniform transverse distribution beam using octupole magnets was studied and verified by simulations. The simulations also confirm that the octupole field does not affect the angle-position correlation in the center part beam, a critical requirement for the imaging lens. A more practical method for HEER using collimators and octupoles for generating more uniform beams is also described. Detailed experimental results and simulation studies are presented in this paper.
机译:已经提出了高能电子射线照相(HEER)用于材料,高能量密度物质和惯性监禁融合的时间分辨成像。由图像强度信息确定的区域密度分辨率对于这些类型的诊断至关重要。对具有相同厚度和相同区域密度靶标的不同材料的初步实验研究已经进行了成像和分析。虽然实验和理论分析之间存在一些差异,但结果表明,密度分布确实可以从HEER中获得。研究了差异的原因,并表明了照明目标的横向分布光束的均匀性的重要性。此外,通过模拟研究和验证了使用Octupole磁体产生均匀横向分布梁的方法。该模拟还确认Octupole场不会影响中心部分光束中的角度位置相关,成像镜头的关键要求。还描述了使用用于产生更均匀的梁的准直器和八面座的HEER更实用的方法。本文提出了详细的实验结果和仿真研究。

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