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国家点火装置中基于针孔成像的中子源重建

Neutron source reconstruction from pinhole imaging at National Ignition Facility.

作者信息

Volegov P, Danly C R, Fittinghoff D N, Grim G P, Guler N, Izumi N, Ma T, Merrill F E, Warrick A L, Wilde C H, Wilson D C

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico 87544, USA.

Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Rev Sci Instrum. 2014 Feb;85(2):023508. doi: 10.1063/1.4865456.

Abstract

The neutron imaging system at the National Ignition Facility (NIF) is an important diagnostic tool for measuring the two-dimensional size and shape of the neutrons produced in the burning deuterium-tritium plasma during the ignition stage of inertial confinement fusion (ICF) implosions at NIF. Since the neutron source is small (∼100 μm) and neutrons are deeply penetrating (>3 cm) in all materials, the apertures used to achieve the desired 10-μm resolution are 20-cm long, single-sided tapers in gold. These apertures, which have triangular cross sections, produce distortions in the image, and the extended nature of the pinhole results in a non-stationary or spatially varying point spread function across the pinhole field of view. In this work, we have used iterative Maximum Likelihood techniques to remove the non-stationary distortions introduced by the aperture to reconstruct the underlying neutron source distributions. We present the detailed algorithms used for these reconstructions, the stopping criteria used and reconstructed sources from data collected at NIF with a discussion of the neutron imaging performance in light of other diagnostics.

摘要

美国国家点火装置(NIF)的中子成像系统是一种重要的诊断工具,用于测量在NIF惯性约束聚变(ICF)内爆点火阶段燃烧的氘 - 氚等离子体中产生的中子的二维尺寸和形状。由于中子源很小(约100μm)且中子在所有材料中的穿透深度都很深(>3cm),用于实现所需10μm分辨率的孔径是20cm长的单面金锥。这些具有三角形横截面的孔径会在图像中产生畸变,并且针孔的扩展特性导致在针孔视场内存在非平稳或空间变化的点扩散函数。在这项工作中,我们使用迭代最大似然技术来消除孔径引入的非平稳畸变,以重建潜在的中子源分布。我们展示了用于这些重建的详细算法、所使用的停止准则以及从NIF收集的数据重建的源,并根据其他诊断方法讨论了中子成像性能。

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