论文标题

用Gaia视差和光谱金属度改善白矮人作为天文纪录器

Improving white dwarfs as chronometers with Gaia parallaxes and spectroscopic metallicities

论文作者

Moss, Adam, von Hippel, Ted, Robinson, Elliot, El-Badry, Kareem, Stenning, David C., van Dyk, David, Fouesneau, Morgan, Bailer-Jones, Coryn A. L., Jeffery, Elizabeth, Sargent, Jimmy, Kloc, Isabelle, Moticska, Natalię

论文摘要

白矮人(WDS)在解决天体物理学的两个问题方面具有未实现的潜力:出色的年龄准确性和精度。 WD冷却年龄可以通过表面温度和半径来推断,可以通过高质量的光度法和视差来限制这些冷却年龄。准确,精确的Gaia视差以及光度测量提供了信息,可提供大量WD的冷却和总年龄的信息。在这里,我们分析了与MS伴侣一起在宽阔的二进制文件中发现的1372个WD,并报告这些WD+MS系统中可实现的冷却和总年龄精度。如果知道其原始金属性,则可以进一步限制WD的总年龄,因为主要序列(MS)祖细胞寿命取决于固定质量时的金属性,而金属性则无法通过WD的光谱进行。我们表明,与统一的约束相比,从38个宽的二元MS伴侣中纳入光谱金属性约束大大降低了WD总年龄的内部不确定性。在我们样本中的38颗恒星中平均,当纳入光谱约束时,总(内部)年龄不确定性从21.04%提高到16.77%。较高的质量WD会产生更好的总年龄精度;对于零年龄序列质量$ \ geq $ 2.0太阳能质量的8 WD,总年龄的平均不确定性从8.61%提高到4.54%。我们发现,如果具有$ \ leq $ 1%的Precision和Pan-Starrs $ G,R $和$ \ leq $ 0.01 $ 0.01的杂志精确度可用,则通常可以为祖细胞质量高于2.0太阳能的WD达到5%的总年龄精度。

White dwarfs (WDs) offer unrealized potential in solving two problems in astrophysics: stellar age accuracy and precision. WD cooling ages can be inferred from surface temperatures and radii, which can be constrained with precision by high quality photometry and parallaxes. Accurate and precise Gaia parallaxes along with photometric surveys provide information to derive cooling and total ages for vast numbers of WDs. Here we analyse 1372 WDs found in wide binaries with MS companions, and report on the cooling and total age precision attainable in these WD+MS systems. The total age of a WD can be further constrained if its original metallicity is known, because the main-sequence (MS) progenitor lifetime depends on metallicity at fixed mass, yet metallicity is unavailable via spectroscopy of the WD. We show that incorporating spectroscopic metallicity constraints from 38 wide binary MS companions substantially decreases internal uncertainties in WD total ages compared to a uniform constraint. Averaged over the 38 stars in our sample, the total (internal) age uncertainty improves from 21.04% to 16.77% when incorporating the spectroscopic constraint. Higher mass WDs yield better total age precision; for 8 WDs with zero age main sequence masses $\geq$ 2.0 solar masses, the mean uncertainty in total ages improves from 8.61% to 4.54% when incorporating spectroscopic metallicities. We find that it is often possible to achieve 5% total age precision for WDs with progenitor masses above 2.0 solar masses if parallaxes with $\leq$ 1% precision and Pan-STARRS $g, r$, and $i$ photometry with $\leq$ 0.01 mag precision are available.

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