Phase resolved spectroscopy and Kepler photometry of the ultracompact AM CVn binary SDSS J190817.07+394036.4
T. Kupfer, P. J. Groot, S. Bloemen, D. Levitan, D. Steeghs, T. R., Marsh, R. G. M. Rutten, G. Nelemans, T. A. Prince, F. F\"urst, S. Geier

TL;DR
This study combines Kepler photometry and phase-resolved spectroscopy to analyze the ultracompact AM CVn binary SDSS J190817.07+394036.4, revealing its orbital period, spectral features, and complex variability patterns.
Contribution
It provides the first detailed phase-resolved spectroscopic analysis of this system, confirming the orbital period and exploring the origin of spectral lines and lightcurve variations.
Findings
Orbital period confirmed at approximately 1086 seconds.
Detected multiple frequencies with significant variability in the lightcurve.
Measured a period change rate of about 1.0 x 10^{-8} s/s for some variations.
Abstract
{\it Kepler} satellite photometry and phase-resolved spectroscopy of the ultracompact AM CVn type binary SDSS J190817.07+394036.4 are presented. The average spectra reveal a variety of weak metal lines of different species, including silicon, sulphur and magnesium as well as many lines of nitrogen, beside the strong absorption lines of neutral helium. The phase-folded spectra and the Doppler tomograms reveal an S-wave in emission in the core of the He I 4471 \AA\,absorption line at a period of \,sec identifying this as the orbital period of the system. The Si II, Mg II and the core of some He I lines show an S-wave in absorption with a phase offset of compared to the S-wave in emission. The N II, Si III and some helium lines do not show any phase variability at all. The spectroscopic orbital period is in excellent agreement with a period at…
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