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首页> 外文期刊>The Astrophysical journal >A COMPLETE ANALYTIC INVERSION OF SUPERNOVA LINES IN THE SOBOLEV APPROXIMATION
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A COMPLETE ANALYTIC INVERSION OF SUPERNOVA LINES IN THE SOBOLEV APPROXIMATION

机译:Sobolev逼近中超新星线的完全解析反演

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摘要

We show that the shape of P Cygni line profiles of photospheric-phase supernova can be analytically inverted to extract both the optical depth and the source function of the line―i.e., all the physical content of the model for the case when the Sobolev approximation is valid. Under various simplifying assumptions, we derive formulae that give S(r) and τ(r) in terms of derivatives of the line flux with respect to wavelength. The transition region between the minimum and the maximum of the line profile turns out to give especially interesting information on the optical depth near the photosphere. The formulae give insights into the relationship between line shape and physical quantities that may be useful in interpreting observed spectra and detailed numerical calculations.
机译:我们表明,光球相位超新星的P Cygni线轮廓的形状可以通过解析求逆,以提取线的光学深度和源函数,即,当Sobolev近似为时,模型的所有物理内容有效。在各种简化假设下,我们得出了根据线通量相对于波长的导数给出S(r)和τ(r)的公式。线轮廓的最小值和最大值之间的过渡区域被证明可以为光球附近的光学深度提供特别有趣的信息。这些公式可深入了解线形与物理量之间的关系,这可能有助于解释观察到的光谱和详细的数值计算。

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