Hard X-ray Emission Associated with White Dwarfs. IV. Signs of Accretion from Sub-stellar Companions
arXiv:2102.05035 · doi:10.3847/1538-4357/abe5a5
Abstract
KPD 0005+5106, with an effective temperature of 200,000 K, is one of the hottest white dwarfs (WDs). ROSAT unexpectedly detected "hard" (1 keV) X-rays from this apparently single WD. We have obtained Chandra observations that confirm the spatial coincidence of this hard X-ray source with KPD 0005+5106. We have also obtained XMM-Newton observations of KPD 0005+5106, as well as PG 1159035 and WD 0121756, which are also apparently single and whose hard X-rays were detected by ROSAT at 3-4 levels. The XMM-Newton spectra of the three WDs show remarkably similar shapes that can be fitted by models including a blackbody component for the stellar photospheric emission, a thermal plasma emission component, and a power-law component. Their X-ray luminosities in the keV band range from to erg~s. The XMM-Newton EPIC-pn soft-band ( keV) lightcurve of KPD 0005+5106 is essentially constant, but the hard-band ( keV) lightcurve shows periodic variations. An analysis of the generalized Lomb-Scargle periodograms for the XMM-Newton and Chandra hard-band lightcurves finds a convincing modulation (false alarm probability of 0.41%) with a period of 4.70.3 hr. Assuming that this period corresponds to a binary orbital period, the Roche radii of three viable types of companion have been calculated: M9V star, T brown dwarf, and Jupiter-like planet. Only the planet has a size larger than its Roche radius, although the M9V star and T brown dwarf may be heated by the WD and inflate past the Roche radius. Thus, all three types of companion may be donors to fuel accretion-powered hard X-ray emission.
Accepted for publication for The Astrophysical Journal
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