Discovery of pulsations, including possible pressure modes, in two new extremely low mass, He-core white dwarfs
J. J. Hermes, M. H. Montgomery, D. E. Winget, Warren R. Brown, A., Gianninas, Mukremin Kilic, Scott J. Kenyon, Keaton J. Bell, and Samuel T., Harrold

TL;DR
This paper reports the discovery of pulsations, including potential pressure modes, in two new extremely low mass He-core white dwarfs, expanding understanding of their pulsation properties and internal structure.
Contribution
It presents the first detection of possible p-mode pulsations in low-mass white dwarfs, revealing new pulsation phenomena in this stellar class.
Findings
Discovery of two new pulsating low-mass white dwarfs.
Detection of short-period variability suggestive of p-modes.
Confirmation that hydrogen partial-ionization drives pulsations in these stars.
Abstract
We report the discovery of the second and third pulsating extremely low mass white dwarfs (WDs), SDSS J111215.82+111745.0 (hereafter J1112) and SDSS J151826.68+065813.2 (hereafter J1518). Both have masses < 0.25 Msun and effective temperatures below 10,000 K, establishing these putatively He-core WDs as a cooler class of pulsating hydrogen-atmosphere WDs (DAVs, or ZZ Ceti stars). The short-period pulsations evidenced in the light curve of J1112 may also represent the first observation of acoustic (p-mode) pulsations in any WD, which provide an exciting opportunity to probe this WD in a complimentary way compared to the long-period g-modes also present. J1112 is a Teff = 9590 +/- 140 K and log(g) = 6.36 +/- 0.06 WD. The star displays sinusoidal variability at five distinct periodicities between 1792-2855 s. In this star we also see short-period variability, strongest at 134.3 s, well…
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