UVES and X-Shooter spectroscopy of the emission line AM CVn systems GP Com and V396 Hya
T. Kupfer (1, 2), D. Steeghs (3), P. J. Groot (2), T. R. Marsh (3),, G. Nelemans (2, 4), G. H. A. Roelofs (2) ((1) California Institute of, Technology, (2) Radboud University Nijmegen, (3) University of Warwick, (4), KU Leuven)

TL;DR
This study uses high-resolution spectroscopy to analyze the emission lines and binary parameters of the AM CVn systems GP Com and V396 Hya, revealing details about their composition, dynamics, and the origin of emission features.
Contribution
First detailed spectroscopic analysis of these systems resolving emission components and constraining binary parameters and accretor rotation.
Findings
Resolved narrow helium emission components and measured their radial velocities.
Detected numerous nitrogen and neon emission lines, with some nitrogen absorption lines unique to GP Com.
Constrained binary parameters and ruled out fast rotation of the accretors.
Abstract
We present time-resolved spectroscopy of the AM CVn-type binaries GP Com and V396 Hya obtained with VLT/X-Shooter and VLT/UVES. We fully resolve the narrow central components of the dominant helium lines and determine radial velocity semi-amplitudes of km s for GP Com and km s for V396 Hya. The mean velocities of the narrow central components show variations from line to line. Compared to calculated line profiles that include Stark broadening we are able to explain the displacements, and the appearance of forbidden helium lines, by additional Stark broadening of emission in a helium plasma with an electron density cm. More than nitrogen and more than neon lines emission lines were detected in both systems. Additionally, nitrogen absorption lines are only seen in GP…
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