Discovery of a T dwarf + white dwarf binary system
A.C. Day-Jones, D.J. Pinfield, M.T. Ruiz, H. Beaumont, B. Burningham,, J. Gallardo, A. Gianninas, P. Bergeron, R. Napiwotzki, J.S. Jenkins, Z.H., Zhang, D. Murray, S. Catalan, J. Gomes

TL;DR
This paper reports the discovery of the first known binary system consisting of a T dwarf and a white dwarf, providing valuable benchmarks for understanding substellar objects and their evolution.
Contribution
It presents the first confirmed T dwarf + white dwarf binary system, with detailed characterization and comparison to atmospheric models, enhancing understanding of T dwarf properties and evolution.
Findings
White dwarf is a cool, magnetic, hydrogen-rich star with an age of at least 4.8 Gyr.
The T dwarf has a spectral type of T4.5 and is located 43-69 pc away.
The binary separation is 16,500-26,500 AU, confirmed as a genuine association.
Abstract
We present the discovery of the first T dwarf + white dwarf binary system LSPM 1459+0857AB, confirmed through common proper motion and spectroscopy. The white dwarf is a high proper motion object from the LSPM catalogue that we confirm spectroscopically to be a relatively cool (Teff=5535+\-45K) and magnetic (B~2MG) hydrogen-rich white dwarf, with an age of at least 4.8Gyrs. The T dwarf is a recent discovery from the UKIRT Infrared Deep Sky Survey (ULAS 1459+0857), and has a spectral type of T4.5+\-0.5 and a distance in the range 43-69pc. With an age constraint (inferred from the white dwarf) of >4.8Gyrs we estimate Teff=1200-1500K and logg=5.4-5.5 for ULAS 1459+0857, making it a benchmark T dwarf with well constrained surface gravity. We also compare the T dwarf spectra with the latest LYON group atmospheric model predictions, which despite some shortcomings are in general agreement…
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