White dwarf-main sequence binaries from SDSS DR8: unveiling the cool white dwarf population
A. Rebassa-Mansergas, C. Agurto-Gangas, M.R. Schreiber, B.T., Gaensicke, D. Koester

TL;DR
This study develops combined optical and infrared color criteria to identify white dwarf-main sequence binaries with cool white dwarfs, significantly expanding the known sample and providing insights into their temperature and spectral type distributions.
Contribution
The paper introduces new color selection methods using optical and infrared data to efficiently find WDMS binaries with cool white dwarfs, updating the SDSS catalogue with 47 new systems.
Findings
84% of candidates are likely genuine WDMS binaries.
71% of selected sources have white dwarf temperatures below ~10000-15000K.
The updated catalogue contains 2316 WDMS systems, including many with cool white dwarfs.
Abstract
The spectroscopic catalogue of white dwarf-main sequence (WDMS) binaries from the Sloan Digital Sky Survey (SDSS) is the largest and most homogeneous sample of compact binary stars currently known. However, because of selection effects, the current sample is strongly biased against systems containing cool white dwarfs and/or early type companions, which are predicted to dominate the intrinsic population. In this study we present colour selection criteria that combines optical (ugriz DR8 SDSS) plus infrared (yjhk DR9 UKIRT Infrared Sky Survey (UKIDSS), JHK Two Micron All Sky Survey (2MASS) and/or w1w2 Wide-Field Infrared Survey Explorer (WISE)) magnitudes to select 3419 photometric candidates of harbouring cool white dwarfs and/or dominant (M dwarf) companions. We demonstrate that 84 per cent of our selected candidates are very likely genuine WDMS binaries, and that the white dwarf…
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