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EVOLUTION OF WHITE DWARF STARS WITH HIGH-METALLICITY PROGENITORS: THE ROLE OF 22Ne DIFFUSION

机译:具有高毁灭性前体的白矮星的演化:22Ne扩散的作用

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Motivated by the strong discrepancy between the main-sequence turnoff age and the white dwarf cooling age in the metal-rich open cluster NGC 6791, we compute a grid of white dwarf evolutionary sequences that incorporates for the first time the energy released by the processes of 22Ne sedimentation and of carbon/oxygen phase separation upon crystallization. The grid covers the mass range from 0.52 to 1.0 M ☉, and is appropriate for the study of white dwarfs in metal-rich clusters. The evolutionary calculations are based on a detailed and self-consistent treatment of the energy released from these two processes, as well as on the employment of realistic carbon/oxygen profiles, of relevance for an accurate evaluation of the energy released by carbon/oxygen phase separation. We find that 22Ne sedimentation strongly delays the cooling rate of white dwarfs stemming from progenitors with high metallicities at moderate luminosities, while carbon/oxygen phase separation adds considerable delays at low luminosities. Cooling times are sensitive to possible uncertainties in the actual value of the diffusion coefficient of 22Ne. Changing the diffusion coefficient by a factor of 2 leads to maximum age differences of ≈8%-20% depending on the stellar mass. We find that the magnitude of the delays resulting from chemical changes in the core is consistent with the slowdown in the white dwarf cooling rate that is required to solve the age discrepancy in NGC 6791.
机译:由于富含金属的开放星团NGC 6791中主序列截止年龄与白矮星冷却年龄之间的巨大差异,我们计算了白矮星演化序列的网格,该网格首次合并了由白矮星演化过程释放的能量22Ne沉淀和结晶时碳/氧相分离。网格覆盖的质量范围为0.52到1.0 M☉,适用于研究富金属星团中的白矮星。进化计算基于对这两个过程释放的能量的详细且自洽的处理,并且基于对碳/氧相释放的能量的准确评估相关的实际碳/氧分布图的使用分离。我们发现22Ne沉积强烈延迟了中等亮度下具有高金属性祖先产生的白矮星的冷却速率,而碳/氧相分离则在低亮度下增加了相当大的延迟。冷却时间对22Ne扩散系数实际值的可能不确定性敏感。根据星体质量,将扩散系数更改为2倍会导致最大年龄差异≈8%-20%。我们发现,由岩心化学变化引起的延迟幅度与解决NGC 6791的年龄差异所需的白矮星冷却速率的降低一致。

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