论文标题

Minijpas调查:白色矮人科学,带有56个光学过滤器

The miniJPAS survey: White dwarf science with 56 optical filters

论文作者

López-Sanjuan, C., Tremblay, P. -E., Ederoclite, A., Ramió, H. Vázquez, Cenarro, A. J., Marín-Franch, A., Varela, J., Akras, S., Guerrero, M. A., Jiménez-Esteban, F. M., de Oliveira, R. Lopes, Chies-Santos, A. L., Fernández-Ontiveros, J. A., Abramo, R., Alcaniz, J., Benítez, N., Bonoli, S., Carneiro, S., Cristóbal-Hornillos, D., Dupke, R. A., de Oliveira, C. Mendes, Moles, M., Sodré Jr., L., Taylor, K.

论文摘要

我们分析了Minijpas中的白矮人人口,第一个正方形是使用56个中频观察到的,145 a宽度宽度滤镜的光学过滤器是加速宇宙宇宙天文学调查(J-PAS)的Javalambre物理学(J-PAS),可提供对具有低分辨率(R〜50)的白色矮人科学的基于数据的预测。我们定义了r <21.5 mag,类似点的概率大于0.5,(u-r)<0.80 mag和(g-i)<0.25 mag的米吉帕斯中最蓝的样本。该样本包括33个带有光谱信息的来源,11个白矮星和22个QSO。我们通过对观察到的光谱的贝叶斯配件来估计有效温度(TEFF),表面重力和白色矮人种群的组成。 MinJPAS数据允许将观察到的白矮星分类为H的主导和以99%的信心为主导,并且检测钙吸收和污染金属至少至21.5 mag,至少对于7000 <teff <22000 K的来源,Minijpas中的白色dwarfs覆盖了7000 <teff <22000 K。有效温度估计为2%的不确定性,接近光谱的1%。表面重力的精确估计取决于可用的视差信息。此外,Teff> 7000 K处的白色矮人种群可以与最蓝的外层QSO分离,仅基于光学测定法提供了干净的样品。 J-PAS的低分辨率光谱为白矮人提供了精确,准确的有效温度和大气成分,并补充了Gaia的数据。 J-PAS还将检测并表征超出Gaia幅度极限的新的白色矮人,从而为光谱传递提供了微弱的候选者。

We analyze the white dwarf population in miniJPAS, the first square degree observed with 56 medium-band, 145 A in width optical filters by the Javalambre Physics of the accelerating Universe Astrophysical Survey (J-PAS), to provide a data-based forecast for the white dwarf science with low-resolution (R ~ 50) photo-spectra. We define the sample of the bluest point-like sources in miniJPAS with r < 21.5 mag, point-like probability larger than 0.5, (u-r) < 0.80 mag, and (g-i) < 0.25 mag. This sample comprises 33 sources with spectroscopic information, 11 white dwarfs and 22 QSOs. We estimate the effective temperature (Teff), the surface gravity, and the composition of the white dwarf population by a Bayesian fitting to the observed photo-spectra. The miniJPAS data permit the classification of the observed white dwarfs into H-dominated and He-dominated with 99% confidence, and the detection of calcium absorption and polluting metals down to r ~ 21.5 mag at least for sources with 7000 < Teff < 22000 K, the temperature range covered by the white dwarfs in miniJPAS. The effective temperature is estimated with a 2% uncertainty, close to the 1% from spectroscopy. A precise estimation of the surface gravity depends on the available parallax information. In addition, the white dwarf population at Teff > 7000 K can be segregated from the bluest extragalactic QSOs, providing a clean sample based on optical photometry alone. The J-PAS low-resolution photo-spectra provide precise and accurate effective temperatures and atmospheric compositions for white dwarfs, complementing the data from Gaia. J-PAS will also detect and characterize new white dwarfs beyond the Gaia magnitude limit, providing faint candidates for spectroscopic follow up.

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