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Numerical simulations of photoionized plasmas: applications to astrophysical and laboratory environments

机译:光电离等离子体的数值模拟:在天体物理和实验室环境中的应用

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摘要

A wide variety of astrophysical objects, ranging from newly formed stars to accreting black holes, produce ionizing radiation. Nearby material will reprocess these photons into other forms of light. Depending on the geometry, we will observe such gas through either an emission or absorption line spectrum. Such clouds are detected across the electromagnetic spectrum and detailed analysis can reveal such vital parameters as the composition of the gas and the form of the ionizing radiation field. The gas is in a non-equilibrium state due to its low density and the presence of a wide range of non-thermal energy sources. The spectrum is typically analyzed with the help of large-scale numerical simulations. This paper describes recent developments of Cloudy, a code that performs such simulations, and outlines applications to star forming regions, active galactic nuclei, and laboratory plasmas.
机译:从新形成的恒星到积聚的黑洞,各种各样的天体物体都会产生电离辐射。附近的物质会将这些光子重新加工成其他形式的光。根据几何形状,我们将通过发射或吸收谱线观察这种气体。在整个电磁频谱上都可以检测到这种云,详细的分析可以揭示出至关重要的参数,例如气体的成分和电离辐射场的形式。气体由于其低密度和多种非热能源的存在而处于非平衡状态。通常在大规模数值模拟的帮助下分析光谱。本文介绍了Cloudy的最新进展,该代码执行了这种模拟,并概述了在恒星形成区域,活跃的银河核和实验室等离子体中的应用。

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