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Numerical investigations of potential systematic uncertainties in iron opacity measurements at solar interior temperatures

机译:太阳内部温度下铁透明度测量潜在系统不确定性的数值研究

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摘要

Iron opacity calculations presently disagree with measurements at an electron temperature of ∼180-195 eV and an electron density of (2-4) × 10~(22) cm~(−3), conditions similar to those at the base of the solar convection zone. The measurements use x rays to volumetrically heat a thin iron sample that is tamped with low-Z materials. The opacity is inferred from spectrally resolved x-ray transmission measurements. Plasma self-emission, tamper attenuation, and temporal and spatial gradients can all potentially cause systematic errors in the measured opacity spectra. In this article we quantitatively evaluate these potential errors with numerical investigations. The analysis exploits computer simulations that were previously found to reproduce the experimentally measured plasma conditions. The simulations, combined with a spectral synthesis model, enable evaluations of individual and combined potential errors in order to estimate their potential effects on the opacity measurement. The results show that the errors considered here do not account for the previously observed model-data discrepancies.
机译:铁透明度计算目前不同意在~180-195 EV的电子温度下的测量值,并且电子密度(2-4)×10〜(22)cm〜(-3),与太阳底部相似的条件对流区。测量使用X射线在体积上加热薄的铁样品,其用低Z材料夯实。从光谱分辨的X射线传输测量推断不透明度。等离子体自排放,篡改衰减和时间和空间梯度都可能导致测量的透明度光谱中的系统误差。在本文中,我们定量评估了数值调查的这些潜在的误差。该分析利用先前发现以再现实验测量的血浆条件的计算机模拟。模拟,结合光谱综合模型,使得个人和组合潜在误差的评估能够估计它们对不透明度测量的潜在影响。结果表明,这里考虑的错误不会占先前观察到的模型数据差异。

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  • 来源
    《PHYSICAL REVIEW E》 |2017年第6期|063206.1-063206.12|共12页
  • 作者单位

    Sandia National Laboratories Albuquerque New Mexico 87185 USA;

    Sandia National Laboratories Albuquerque New Mexico 87185 USA;

    Sandia National Laboratories Albuquerque New Mexico 87185 USA;

    Sandia National Laboratories Albuquerque New Mexico 87185 USA;

    Prism Computational Sciences Madison Wisconsin 53711 USA;

    Prism Computational Sciences Madison Wisconsin 53711 USA;

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  • 正文语种 eng
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