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New Advances in Photoionisation Codes: How and what for?

机译:摄影代码的新进步:如何以及何种?

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The study of photoionised gas in planetary nebulae (PNe) has played a major role in the achievement, over the years, of a better understanding of a number of physical processes, pertinent to a broader range of fields than that of PNe studies, spanning from atomic physics to stellar evolution theories. Whilst empirical techniques are routinely employed for the analysis of the emission line spectra of these objects, the accurate interpretation of the observational data often requires the solution of a set of coupled equations, via the application of a photoionistation/plasma code. A number of large-scale codes have been developed since the late sixties, using various analytical or statistical techniques for the transfer of continuum radiation, mainly under the assumption of spherical symmetry and a few in 3D. These codes have been proved to be powerful and in many cases essential tools, but a clear idea of the underlying physical processes and assumptions is necessary in order to avoid reaching misleading conclusions.
机译:星球上的Photo Infaction气体(PNE)的研究在这方面发挥了重要作用,多年来更好地了解了许多物理过程,与跨越PNE研究的更广泛的领域相关的影响原子物理到恒星演化理论。虽然经常用于分析这些对象的发射线光谱的经验技术,但是对观察数据的准确解释通常需要通过应用光通道/等离子体代码来解决一组耦合方程。由于六十年代晚期,使用各种分析或统计技术来传递连续辐射的各种分析或统计技术,主要是在球形对称的假设和少数3D中的三维之后,已经开发了许多大规模代码。这些代码已被证明是强大的,并且在许多情况下,必要的工具,但有必要清楚地了解潜在的物理过程和假设,以避免达到误导性结论。

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