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MEASURING THE ROTATIONAL PERIODS OF ISOLATED MAGNETIC WHITE DWARFS

机译:测量隔离的磁性白矮星的旋转周期

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We present time-series photometry of 30 isolated magnetic white dwarfs, surveyed with the Jacobus Kapteyn Telescope between 2002 August and 2003 May. We find that 9 were untestable due to varying comparison stars, but of the remaining 21, 5 (24%) are variable with reliably derived periods, while a further 9 (43%) are seen to vary during our study, but we were unable to derive the period. We interpret the variability to be the result of rotation of the objects. We find no correlation between rotation period and mass, temperature, magnetic field, or age. We have found variability in 9 targets with low magnetic field strengths and temperatures low enough for partially convective atmospheres, which we highlight as candidates for polarimetry to search for starspots. Most interestingly, we have found variability in one target, PG1658+441, which has a fully radiative atmosphere in which conventional starspots cannot form, but a magnetic field strength that is too low to cause magnetic dichroism. The source of variability in this target remains a mystery.
机译:我们介绍了2002年8月至2003年5月之间用Jacobus Kapteyn望远镜调查的30个孤立的白矮星的时间序列光度法。我们发现由于比较星的变化,有9个是不可测试的,但是在其余21个中,有5个(24%)在可靠得出的时期内是可变的,而在我们的研究中,还有9个(43%)发生了变化,但我们无法得出期间。我们将可变性解释为对象旋转的结果。我们发现旋转周期与质量,温度,磁场或年龄之间没有关联。我们发现了9个目标的变异性,这些目标的磁场强度低且温度足以满足部分对流性大气的需要,我们将其突出显示为极化法搜索星点的候选对象。最有趣的是,我们发现一个目标PG1658 + 441具有可变性,该目标具有完全辐射的气氛,无法在其中形成传统的星点,但是磁场强度太低而不会导致磁二色性。这个目标的可变性仍然是一个谜。

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