论文标题

首先发现具有M Dwarf的普通运动中的Ultra-Cool白色矮人基准

First discovery of an ultra-cool white dwarf benchmark in common proper motion with an M dwarf

论文作者

Lam, M. C., Hambly, N. C., Lodieu, N., Blouin, S., Harvey, E. J., Smith, R. J., Galvez-Ortiz, M. C., Zhang, Z. H.

论文摘要

超冷的白色矮人是宇宙中最古老的恒星残留物之一。它们有效的重力沉降和低有效温度是为了表现出光滑光谱。因此,不可能得出它们的径向速度或找到祖细胞的化学。可以做的最好的是从相关来源推断出这种属性,这些属性是同化的。这种系统的最简单形式是一个常见的适当运动对,其中一个恒星是进化的退化,另一个是主要序列恒星。在这项工作中,我们介绍了第一个系统的发现,M Dwarf LHS 6328和Ultra-Cool White Dwarf PSO PSO J1801+625,来自Pan-Starrs 1 3 $π$调查和$ GAIA $ gaia $ $ gaia $ gaia $ data Releaste 2。随访2。涵盖了3750-245500°的可用波长范围。他们的光谱表明,白色矮人的有效温度为3550K,表面重力为$ \ log g = 7.45 \ pm 0.13 $ 0.13 $或$ \ log G = 7.49 \ pm 0.13 \ pm 0.13 $,当CO或HE核心与超冷白dwarf大气模型的合成光谱相比。该系统具有-0.25 <[fe/h] <0.0的略微下极金属性,并且空间速度为(u,v,w)=($ -114.26 \ pm 0.24 $,$ 222.94 \ pm 0.60 $,$ 10.60 $,$ 10.25 \ $ 10.25白矮人。这使其成为迄今为止同类的第一个也是唯一的基准。

Ultra-cool white dwarfs are among the oldest stellar remnants in the Universe. Their efficient gravitational settling and low effective temperatures are responsible for the smooth spectra they exhibit. For that reason, it is not possible to derive their radial velocities or to find the chemistry of the progenitors. The best that can be done is to infer such properties from associated sources, which are coeval. The simplest form of such a system is a common proper motion pair where one star is an evolved degenerate and the other a main-sequence star. In this work, we present the discovery of the first of such a system, the M dwarf LHS 6328 and the ultra-cool white dwarf PSO J1801+625, from the Pan-STARRS 1 3$π$ survey and the $Gaia$ Data Release 2. Follow-up spectra were collected covering a usable wavelength range of 3750-24500 Å. Their spectra show that the white dwarf has an effective temperature of 3550K and surface gravity of $\log g = 7.45 \pm 0.13$ or $\log g = 7.49 \pm 0.13$ for a CO or He core, respectively, when compared against synthetic spectra of ultra-cool white dwarf atmosphere models. The system has slightly subsolar metallicity with -0.25 < [Fe/H] < 0.0, and a spatial velocity of (U, V, W) = ($-114.26 \pm 0.24$, $222.94 \pm 0.60$, $10.25 \pm 0.34$) km s $^{-1}$ the first radial velocity and metallicity measurements of an ultra-cool white dwarf. This makes it the first and only benchmark of its kind to date.

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