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用于惯性约束聚变实验中使用DANTE诊断测量X射线辐射驱动的光谱传感器误差分析。

Spectral sensor error analysis for measuring x-ray radiation drive using the DANTE diagnostic toward inertial confinement fusion experiments.

作者信息

Harris C D, Kemp G E, Schneider M B, Widmann K, Rubery M S, May M J

机构信息

Lawrence Livermore National Laboratory, 7000 East Ave., Livermore, California 94551, USA.

Atomic Weapons Establishment, Aldermaston, Reading RG7 4PR, United Kingdom.

出版信息

Rev Sci Instrum. 2021 Mar 1;92(3):033505. doi: 10.1063/5.0035584.

Abstract

DANTE is a diagnostic used to measure the x-radiation drive produced by heating a high-Z cavity ("hohlraum") with high-powered laser beams. It records the spectrally and temporally resolved radiation flux at x-ray energies between 50 eV and 20 keV. Each sensor configuration on DANTE is composed of filters, mirrors, and x-ray diodes to define 18 different x-ray channels whose output is voltage as a function of time. The absolute flux is then determined from the photometric calibration of the sensor configuration and a spectral reconstructing algorithm. The reconstruction of the spectra vs time from the measured voltages and known response of each channel has presented challenges. We demonstrate a novel approach here for quantifying the error on the determined flux based on the channel sensor configuration and most commonly used reconstruction algorithm. In general, we find that the integrated spectral flux from a hohlraum can robustly be reconstructed (within ∼14%) using a traditional unfold approach with as few as ten channels due to the underlying assumption of a largely Planckian spectral intensity distribution.

摘要

DANTE是一种诊断工具,用于测量通过用高功率激光束加热高Z腔(“黑体腔”)产生的X射线驱动。它记录50电子伏特至20千电子伏特X射线能量范围内的光谱和时间分辨辐射通量。DANTE上的每个传感器配置由滤光片、镜子和X射线二极管组成,以定义18个不同的X射线通道,其输出是作为时间函数的电压。然后根据传感器配置的光度校准和光谱重建算法确定绝对通量。从测量电压和每个通道的已知响应重建光谱随时间的变化存在挑战。我们在此展示一种新颖的方法,用于基于通道传感器配置和最常用的重建算法量化所确定通量的误差。一般来说,我们发现由于基本假设光谱强度分布在很大程度上是普朗克分布,使用传统的展开方法,仅用十个通道就能可靠地重建黑体腔的积分光谱通量(误差在约14%以内)。

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