Photometric variability in a warm, strongly magnetic DQ white dwarf, SDSS J103655.39+652252.2
Kurtis A. Williams, D. E. Winget, M. H. Montgomery, Patrick Dufour, S., O. Kepler, J. J. Hermes, Ross E. Falcon, K. I. Winget, Michael Bolte, K., H. R. Rubin

TL;DR
This paper reports the discovery of photometric variability in a magnetic, warm DQ white dwarf, analyzes its spectral and magnetic properties, and suggests it is a transitional object between hot and cool DQ white dwarfs, with implications for understanding white dwarf variability.
Contribution
It provides the first detailed analysis of variability in a warm, magnetic DQ white dwarf, combining photometric, spectral, and atmospheric modeling to characterize its properties and evolutionary state.
Findings
Detected coherent monoperiodic variability at ~1116 s
Model atmospheres match observed spectral and photometric properties
Star is a transitional object between hot and cool DQ white dwarfs
Abstract
We present the discovery of photometric variability in the DQ white dwarf SDSS J103655.39+652252.2 (SDSS J1036+6522). Time-series photometry reveals a coherent monoperiodic modulation at a period of 1115.64751(67) s with an amplitude of 0.442% +/- 0.024%; no other periodic modulations are observed with amplitudes >~0.13%. The period, amplitude, and phase of this modulation are constant within errors over 16 months. The spectrum of SDSS J1036+6522 shows magnetic splitting of carbon lines, and we use Paschen-Back formalism to develop a grid of model atmospheres for mixed carbon and helium atmospheres. Our models, while reliant on several simplistic assumptions, nevertheless match the major spectral and photometric properties of the star with a self-consistent set of parameters: Teff~15,500 K, log g ~9, log(C/He)=-1.0, and a mean magnetic field strength of 3.0 +/- 0.2 MG. The temperature…
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