论文标题

新的白色矮人信封模型和扩散。申请DQ白矮人

New white dwarf envelope models and diffusion. Application to DQ white dwarfs

论文作者

Koester, D., Kepler, S. O., Irwin, A. W.

论文摘要

最近对富含碳(DQ)的白矮人大气的研究表明,存在两个不同的人群,这些种群以温度范围为特征,但更重要的是,由较高的群体的极高质量。通过扩展的氦对流区域将碳疏teen挖出的结果被广泛理解为10000 K以下的经典DQ。高质量组对它们的起源提出了几个问题,也提出了有效温度与质量的意外相关性。我们建议研究这些物体的信封,以确定总氢和氦气的进化​​线索。我们开发了用于包膜整合和扩散平衡的新代码,这些代码适用于异常的化学组成,这不一定由氢和氦气主导。使用新的大气参数的新结果,特别是使用Gaia视差获得的质量,我们证实,在凉爽的经典DQ中,TEFF的碳丰度狭窄,确实是由于早期研究中的总质量分数几乎恒定而引起的。该质量分数小于恒星进化计算所预测的。对于高于10000 K的温暖DQ(被认为起源于双白矮人合并),我们获得了极低的氢和氦气。质量与TEFF的相关性仍然无法解释,但是氦层质量与TEFF的另一种可能的相关性以及重力红移对两者的现实产生了怀疑,并提出了当前模型的可能缺点。

Recent studies of the atmospheres of carbon-rich (DQ) white dwarfs have demonstrated the existence of two different populations that are distinguished by the temperature range, but more importantly, by the extremely high masses of the hotter group. The classical DQ below 10000 K are well understood as the result of dredge-up of carbon by the expanding helium convection zone. The high-mass group poses several problems regarding their origin and also an unexpected correlation of effective temperature with mass. We propose to study the envelopes of these objects to determine the total hydrogen and helium masses as possible clues to their evolution. We developed new codes for envelope integration and diffusive equilibrium that are adapted to the unusual chemical composition, which is not necessarily dominated by hydrogen and helium. Using the new results for the atmospheric parameters, in particular, the masses obtained using Gaia parallaxes, we confirm that the narrow sequence of carbon abundances with Teff in the cool classical DQ is indeed caused by an almost constant helium to total mass fraction, as found in earlier studies. This mass fraction is smaller than predicted by stellar evolution calculations. For the warm DQ above 10000 K, which are thought to originate from double white dwarf mergers, we obtain extremely low hydrogen and helium masses. The correlation of mass with Teff remains unexplained, but another possible correlation of helium layer masses with Teff as well as the gravitational redshifts casts doubt on the reality of both and suggests possible shortcomings of current models.

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