论文标题

异步积聚可以模仿多样的白矮人污染物I:核心和地幔碎片

Asynchronous accretion can mimic diverse white dwarf pollutants I: core and mantle fragments

论文作者

Brouwers, Marc G., Bonsor, Amy, Malamud, Uri

论文摘要

被污染的白色矮人用作天体物理质谱仪 - 它们的光谱丰度用于推断出积聚在其上的行星物体的组成。我们表明,由于积聚过程中的不对称性,落在恒星上的材料的组成可能会随着单个行星体的积聚而变化。因此,白色矮人的瞬时光球丰度不一定反映其污染物的大量组成,尤其是当它们的扩散时间表很短时。特别是,我们预测,当具有铁核的小行星潮汐破坏白矮人周围时,弹出了较大的地幔份额,并且积聚材料的核心/地幔分数随事件期间的时间而变化。至关重要的是,这意味着不能确定分化污染物的核心部分对于具有短扩散时间尺度的白色矮人,这仅采样了较长的吸积过程的简短发作。观察到的污染白矮人的种群支持了提出的理论。相对于恒星的丰度比,更多的白色矮人具有高铁/ca高的材料,表明地幔材料的弹出。此外,我们发现暂定的证据表明,铁的吸积率比镁或钙的降低速度更快,这暗示了积聚成分的变化。提出的理论的进一步证实将来自对年轻白矮星的大型样本的上级分析。

Polluted white dwarfs serve as astrophysical mass spectrometers - their photospheric abundances are used to infer the composition of planetary objects that accrete onto them. We show that due to asymmetries in the accretion process, the composition of the material falling onto a star may vary with time during the accretion of a single planetary body. Consequently, the instantaneous photospheric abundances of white dwarfs do not necessarily reflect the bulk composition of their pollutants, especially when their diffusion timescales are short. In particular, we predict that when an asteroid with an iron core tidally disrupts around a white dwarf, a larger share of its mantle is ejected, and that the core/mantle fraction of the accreting material varies with time during the event. Crucially, this implies that the core fraction of differentiated pollutants cannot be determined for white dwarfs with short diffusion timescales, which sample only brief episodes of longer accretion processes. The observed population of polluted white dwarfs backs up the proposed theory. More white dwarfs have accreted material with high Fe/Ca than low Fe/Ca relative to stellar abundance ratios, indicating the ejection of mantle material. Additionally, we find tentative evidence that the accretion rate of iron decreases more rapidly than that of magnesium or calcium, hinting at variability of the accreted composition. Further corroboration of the proposed theory will come from the up-coming analysis of large samples of young white dwarfs.

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