首页> 外文会议>13th APS Topical Conference on Atomic Processes in Plasmas, Apr 22-25, 2002, Gatlinburg, Tennessee >Spectroscopic Determination of Core Gradients in Inertial Confinement Fusion Implosions
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Spectroscopic Determination of Core Gradients in Inertial Confinement Fusion Implosions

机译:惯性约束聚变内爆中核梯度的光谱测定

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We report on a collaborative effort that has led to the development of a spectroscopic method for the determination of the gradient structure in ICF implosion cores based on the self-consistent analysis of simultaneous X-ray monochromatic images and X-ray line spectra. This technique is applied to a series of stable and spherically symmetric implosion experiments where Ar-doped D_2-filled plastic shells were driven with the GEKKO and OMEGA laser systems. Argon K-shell X-ray line spectra were measured with streak crystal spectrometers, while X-ray monochromatic imagers recorded core images based on the Ar Heβ line. The analysis self-consistently determines the temperature and density gradients that yield the best fits to both the spatial distribution of monochromatic emissivity and spectral line shapes. A multi-objective genetic algorithm is used to efficiently perform the analysis. This measurement is critical for understanding the spectra formation and plasma dynamics associated with the implosion process. In addition, since the results are independent of hydrodynamic simulations they are important for the verification and benchmarking of detailed fluid dynamic models of high energy density plasmas.
机译:我们报告了一项合作成果,该成果基于对同时X射线单色图像和X射线线谱的自洽分析,确定了ICF爆破核中的梯度结构的光谱方法的开发。这项技术应用于一系列稳定且球形对称的内爆实验,其中用GEKKO和OMEGA激光系统驱动掺Ar的D_2填充塑料壳。用条纹晶体光谱仪测量了氩K壳X射线线谱,而X射线单色成像仪则根据ArHeβ线记录了核心图像。该分析可以自洽地确定温度和密度梯度,以使其最适合单色发射率的空间分布和光谱线形。使用多目标遗传算法可以有效地执行分析。此测量对于了解与内爆过程相关的光谱形成和等离子体动力学至关重要。此外,由于结果与流体动力学模拟无关,因此对于验证和确定高能密度等离子体详细流体动力学模型的基准非常重要。

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