论文标题

强烈磁性超副作用的白色矮人EGGR的快速旋转156

The Rapid Rotation of the Strongly Magnetic Ultramassive White Dwarf EGGR 156

论文作者

Williams, K. A., Hermes, J. J., Vanderbosch, Z. P.

论文摘要

白矮人旋转期的分布为限制恒星演化后期的角动量演变提供了一种手段,以及对双重变性合并的物理和残余物的见解。尽管低质量白色矮人的旋转分布通过星星志学受到了较好的约束,但高质量白矮人的旋转分布可能是由中间质量恒星进化或白矮人合并引起的。由于斑点恒星的旋转而导致的白色矮人的光度变异性正在迅速增加高质量白色矮人的样本量,并以测量的旋转周期增加。我们介绍了EGGR 156的Lightcurve的22.4分钟光度变异性的发现,EGGR 156(一种强烈磁性的超杀伤白矮人)的发现。我们将这种可变性解释为快速旋转,我们的数据表明EGGR 156是双重合并合并的残余。最后,我们计算由于磁偶极辐射引起的快速旋转,巨大的磁WD的周期变化速率。在许多情况下,包括EGGR 156,当前在合理的时间尺度上无法检测到该周期更改,这表明这些WD可能是非常精确的时钟。对于最磁性最高,迅速旋转的巨大WD,例如ZTF J1901+1450和RE J0317 $ - $ 853,应检测到周期的变化,并可能有助于限制这些异国情调的白色矮人的结构和演变。

The distribution of white dwarf rotation periods provides a means for constraining angular momentum evolution during the late stages of stellar evolution, as well as insight into the physics and remnants of double degenerate mergers. Although the rotational distribution of low mass white dwarfs is relatively well constrained via asteroseismology, that of high mass white dwarfs, which can arise from either intermediate mass stellar evolution or white dwarf mergers, is not. Photometric variability in white dwarfs due to rotation of a spotted star is rapidly increasing the sample size of high mass white dwarfs with measured rotation periods. We present the discovery of 22.4 minute photometric variability in the lightcurve of EGGR 156, a strongly magnetic, ultramassive white dwarf. We interpret this variability as rapid rotation, and our data suggest that EGGR 156 is the remnant of a double degenerate merger. Finally, we calculate the rate of period change in rapidly rotating, massive, magnetic WDs due to magnetic dipole radiation. In many cases, including EGGR 156, the period change is not currently detectable over reasonable timescales, indicating that these WDs could be very precise clocks. For the most highly magnetic, rapidly rotating massive WDs, such as ZTF J1901+1450 and RE J0317$-$853, the period change should be detectable and may help constrain the structure and evolution of these exotic white dwarfs.

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