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首页> 外文期刊>The Astrophysical journal >DETONATING FAILED DEFLAGRATION MODEL OF THERMONUCLEAR SUPERNOVAE. Ⅱ. COMPARISON TO OBSERVATIONS
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DETONATING FAILED DEFLAGRATION MODEL OF THERMONUCLEAR SUPERNOVAE. Ⅱ. COMPARISON TO OBSERVATIONS

机译:超核的爆破失败的减缩模型。 Ⅱ。与观测的比较

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摘要

We develop and demonstrate the methodology of testing multidimensional supernova models against observations by studying the properties of one example of the detonation from failed deflagration (DFD) explosion model of thermonuclear supernovae. Using time-dependent multidimensional radiative transfer calculations, we generate the synthetic broadband optical light curves, near-infrared light curves, color evolution curves, full spectral time series, and spectropolarization of the model, as seen from various viewing angles. All model observables are critically evaluated against examples of well-observed, standard Type Ia supernovae (SNe Ia). We explore the consequences of the intrinsic model asphericity by studying the dependence of the model emission on viewing angle, and by quantifying the resulting dispersion in (and internal correlations between) various model observables. These statistical properties of the model are also evaluated against those of the available observational sample of SNe Ia. On the whole, the DFD model shows good agreement with a broad range of SN Ia observations. Certain deficiencies are also apparent, and point to further developments within the basic theoretical framework. We also identify several intriguing orientation effects in the model that suggest ways in which the asphericity of SNe Ia may contribute to their photometric and spectroscopic diversity and, conversely, how the relative homogeneity of SNe Ia constrains the degree of asymmetry allowable in the models. The comprehensive methodology adopted in this work proves an essential component of developing and validating theoretical supernova mqdels, and helps motivate and clearly define future directions in both the modeling and the observation of SNe Ia.
机译:我们通过研究热核超新星的失败爆燃(DFD)爆炸模型引爆的一个例子的性质,开发并证明了针对观测的多维超新星模型的测试方法。使用时间相关的多维辐射转移计算,我们可以从各种角度生成合成宽带光学光曲线,近红外光曲线,颜色演化曲线,模型的全光谱时间序列和光谱偏振。所有观测到的模型都经过严格观测,并根据观测良好的标准Ia型超新星(SNe Ia)进行了评估。我们通过研究模型发射对视角的依赖性,并量化各种模型可观测值(以及它们之间的内部相关性)的结果分散,来探索固有模型非球面性的后果。还对照SNe Ia的可用观测样本的那些属性评估了模型的这些统计属性。总体而言,DFD模型与广泛的SN Ia观测值显示出良好的一致性。某些缺陷也很明显,并指出了在基本理论框架内的进一步发展。我们还确定了模型中的几种有趣的取向效应,这些现象提出了SNe Ia的非球面性可能有助于其光度和光谱多样性的方式,以及相反地,SNe Ia的相对均匀性如何限制了模型中允许的不对称程度。这项工作中采用的综合方法论证明了开发和验证理论超新星mqdel的重要组成部分,并有助于激发和清楚地定义SNe Ia的建模和观测的未来方向。

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