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Accretion and Diffusion in the DAZ White DwarfGALEX J1931+0117

机译:Daz White Dwarfgalex J1931 + 0117中的吸积和扩散

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We present an analysis of high-dispersion and high signal-to-noise ratio spectra of the DAZ white dwarf GALEX J1931+0117. The spectra obtained with the VLT-Kueyen/UV-Visual Echelle Spectrograph show several well-resolved Si ii spectral lines enabling a study of pressure effects on line profiles. We observed large Stark shifts in silicon lines in agreement with labo-ratory measurements. A model atmosphere analysis shows that the magnesium, silicon and iron abundances exceed solar abundances, while the oxygen and calcium abundances are below solar. Also, we compared the observed line profiles to synthetic spectra computed with variable accretion rates and vertical abundance distributions assuming diffusion steady-state. The inferred accretion rates vary from M = 2 x 10~6 for calcium to 2 x 10~9 g s~(-1) for oxygen and indicate that the accretion flow is dominated by oxygen, silicon and iron while being deficient in carbon, magnesium and calcium. The lack of radial velocity variations between two measurement epochs suggests that GALEX J1931+01 17 is probably not in a close binary and that the source of the accreted material resides in a debris disc.
机译:我们提出的高分散性和DAZ白矮星GALEX J1931 + 0117的高信噪比光谱的分析。与VLT-Kueyen / UV-视觉阶梯光栅光谱仪获得的光谱显示出一些良好分辨的Si II谱线使对线剖面压力影响的研究。我们观察到与拉博 - ratory测量协议,硅线大斯塔克变化。模型气氛分析表明,镁,硅和铁的丰度超过太阳能丰度,而氧和钙丰度低于太阳能。此外,我们比较所观察到的线剖面与可变吸积率和垂直分布丰富假设扩散稳态计算的合成光谱。所述推断积率从M = 2×10 -6钙至2×10个-9 GS〜(-1)对氧气和指示该吸积流由氧,硅和铁,同时在缺乏碳为主,镁变化和钙。缺乏两个测量历元之间的径向速度变化表明GALEX J1931 + 01 17可能不是在靠近二进制和该增生材料驻留在一个岩屑盘的来源。

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