Spectral analysis of ultra-cool white dwarfs polluted by planetary debris
Abstract
We identify two ultra-cool ( K) metal-polluted (DZ) white dwarfs WDJ21474035 and WDJ19220233 as the coolest and second coolest DZ stars known to date with K and K, respectively. Strong atmospheric collision-induced absorption (CIA) causes the suppression of red optical and infra-red flux in WDJ19220233, resulting in an unusually blue colour given its low temperature. WDJ21474035 has moderate infra-red CIA yet has the reddest optical colours known for a DZ white dwarf. Microphysics improvements to the non-ideal effects and CIA opacities in our model atmosphere code yields reasonable solutions to observations of these ultra-cool stars. WDJ21474035 has a cooling age of over 10 Gyr which is the largest known for a DZ white dwarf, whereas WDJ19220233 is slightly younger with a cooling age of 9 Gyr. Galactic kinematics calculations from precise Gaia EDR3 astrometry reveal these ultra-cool DZ stars as likely members of the Galactic disc thus they could be pivotal objects in future studies constraining an upper age limit for the disc of the Milky Way. We present intermediate-resolution spectroscopy for both objects, which provides the first spectroscopic observations of WDJ21474035. Detections of sodium and potassium are made in both white dwarfs, in addition to calcium in WDJ19220233 and lithium in WDJ21474035. We identify the magnetic nature of WDJ21474035 from Zeeman splitting in the lithium line and also make a tentative detection of carbon, so we classify this star as DZQH. WDJ19220233 likely accreted planetary crust debris, while the debris composition that polluted WDJ21474035 remains unconstrained.
Keywords
Cite
@article{arxiv.2206.05258,
title = {Spectral analysis of ultra-cool white dwarfs polluted by planetary debris},
author = {Abbigail K. Elms and Pier-Emmanuel Tremblay and Boris T. Gänsicke and Detlev Koester and Mark A. Hollands and Nicola P. Gentile Fusillo and Tim Cunningham and Kevin Apps},
journal= {arXiv preprint arXiv:2206.05258},
year = {2022}
}
Comments
18 pages, 8 figures. Accepted by MNRAS