论文标题

16 Cygni系统的透彻表征。第二部分。内部结构的地震反转

Thorough characterisation of the 16 Cygni system. Part II. Seismic inversions of the internal structure

论文作者

Buldgen, G., Farnir, M., Eggenberger, P., Bétrisey, J., Pezzotti, C., Pinçon, C., Deal, M., Salmon, S. J. A. J.

论文摘要

空间光度计观测值的出现为大量恒星提供了高质量的星号数据。这些观察结果使先进技术的适应能力,直到那时仅限于Heliosesology,才能研究最佳的星号靶标。在其中,16cyg二元系统拥有一个特殊的位置,是开普勒观察到的最亮的太阳能双胞胎。对于该系统,模块易于获得高质量的星号,光谱和干涉数据,使其成为恒星模型局限性的完美测试床。我们旨在进一步限制16cyga&b的内部结构和基本参数,使用全局指标和内部结构的局部校正的线性地震反演技术。我们从以前的论文中通过详细建模定义的模型开始,并通过将变异反转应用于这些模型来扩展分析。我们进行了所谓的地震指标的反转,并提供了两颗恒星内部结构的局部校正。我们的结果表明,仅线性地震反演就无法区分16cyga&b的标准模型和非标准模型。我们确认了使用线性反转技术的先前研究的结果,但是考虑到差异可以与小的基本参数变化相关,而不是与模型中缺失的过程有关。我们证实了我们上一篇论文执行的建模结果的鲁棒性和可靠性。我们得出的结论是,从地震的角度来看,可能需要非线性反转来进一步研究16cyga&b的特性,但是这些反转应与分析光元素的消耗分析,例如锂和鸟晶(例如berylium and Beryllium),以限制化学物质和潜在的非标准进化的宏观运输。

The advent of space-based photometry observations provided high-quality asteroseismic data for a large number of stars. These observations enabled the adaptation of advanced techniques, until then restricted to helioseismology, to study the best asteroseismic targets. Amongst these, the 16Cyg binary system holds a special place, being the brightest solar twins observed by Kepler. For this system, modellers have access to high-quality asteroseismic, spectroscopic and interferometric data, making it the perfect testbed for the limitations of stellar models. We aim to further constrain the internal structure and fundamental parameters of 16CygA&B using linear seismic inversion techniques of both global indicators and localised corrections of the internal structure. We start from the models defined by detailed modelling in our previous paper and extend our analysis by applying variational inversions to these models. We carried out inversions of so-called seismic indicators and provided local corrections of the internal structure of the two stars. Our results indicate that linear seismic inversions alone are not able to discriminate between standard and non-standard models for 16CygA&B. We confirm the results of our previous studies that used linear inversion techniques, but consider that the differences could be linked to small fundamental parameters variations rather than to a missing process in the models. We confirm the robustness and reliability of the results of the modelling performed in our previous paper. We conclude that non-linear inversions are likely required to further investigate the properties of 16CygA&B from a seismic point of view, but that these inversions should be coupled to analyses of the depletion of light elements such as lithium and beryllium to constrain the macroscopic transport of chemicals and potential non-standard evolutionary paths.

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