White Dwarf Rotation as a Function of Mass and a Dichotomy of Mode Linewidths: Kepler Observations of 27 Pulsating DA White Dwarfs Through K2 Campaign 8
J. J. Hermes, B. T. Gaensicke, Steven D. Kawaler, S. Greiss, P.-E., Tremblay, Nicola Pietro Gentile Fusillo, R. Raddi, S. M. Fanale, Keaton J., Bell, E. Dennihy, J. T. Fuchs, B. H. Dunlap, J. C. Clemens, M. H. Montgomery,, D. E. Winget, P. Chote, T. R. Marsh, and S. Redfield

TL;DR
This study uses Kepler observations of 27 pulsating white dwarfs to analyze their oscillation modes, rotation periods, and mass relationships, revealing a dichotomy in mode linewidths and providing new insights into white dwarf angular momentum evolution.
Contribution
The paper presents the first extensive Kepler-based analysis of white dwarf pulsations, identifying mode linewidth dichotomy and measuring rotation periods across a range of masses.
Findings
White dwarf pulsations show a sharp linewidth dichotomy at ~800 s.
Rotation periods for 20 white dwarfs are directly measured, more than doubling previous data.
White dwarf rotation periods correlate with mass, informing stellar angular momentum evolution.
Abstract
We present photometry and spectroscopy for 27 pulsating hydrogen-atmosphere white dwarfs (DAVs, a.k.a. ZZ Ceti stars) observed by the Kepler space telescope up to K2 Campaign 8, an extensive compilation of observations with unprecedented duration (>75 days) and duty cycle (>90%). The space-based photometry reveals pulsation properties previously inaccessible to ground-based observations. We observe a sharp dichotomy in oscillation mode linewidths at roughly 800 s, such that white dwarf pulsations with periods exceeding 800 s have substantially broader mode linewidths, more reminiscent of a damped harmonic oscillator than a heat-driven pulsator. Extended Kepler coverage also permits extensive mode identification: We identify the spherical degree of 61 out of 154 unique radial orders, providing direct constraints of the rotation period for 20 of these 27 DAVs, more than doubling the…
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