论文标题

长周期AP恒星在苔丝数据中发现:北黄半球

Long-period Ap stars discovered with TESS data: The northern ecliptic hemisphere

论文作者

Mathys, G., Kurtz, D. W., Holdsworth, D. L.

论文摘要

磁性AP星的旋转周期跨越了五到六个数量级。周期差异必须在预序序列阶段进行,但是导致其的物理过程仍然难以捉摸。对具有数十年至数百年的旋转周期的AP恒星的研究代表了一种有希望的途径,可以进一步了解AP恒星中旋转的起源和演变。 从历史上看,已经发现已知的几乎所有最长的AP恒星都具有强烈的磁性。很少有很长的弱磁性AP星有很长时间的鉴定和研究。我们根据苔丝数据进行了系统的搜索,以独立于其磁场的强度识别超慢旋转的AP(SSRAP)恒星,目的是以公正的方式表征最长的AP恒星旋转周期的分布。我们发现67颗AP星无旋转变异性在北部的黄半球苔丝数据中。其中,有46个是新近识别的SSRAP星候选人,这是先前在南方半球半球上发现的数字的两倍。 我们确认,在弱磁性恒星中,超慢旋转趋势往往比在强磁星中频繁发生。我们提供了在长期AP恒星的磁场强度分布中存在差距和〜3 kg之间差距之间存在差距的新证据。我们还确认,在缓慢旋转的AP恒星中,ROAP恒星的发生率高于平均水平。我们报告了九个确定的和五个候选δSCT恒星的意外发现,以及两个黯然失色的二进制方法。这项工作为对最长时期AP星的系统,公正的研究铺平了道路,以表征其旋转,磁性和脉动性能之间的相关性。

The rotation periods of the magnetic Ap stars span five to six orders of magnitude. Period differentiation must have taken place at the pre-main sequence stage, but the physical processes that lead to it remain elusive. The study of Ap stars that have rotation periods of tens to hundreds of years represents a promising avenue to gain additional insight into the origin and evolution of rotation in Ap stars. Historically, almost all the longest period Ap stars known have been found to be strongly magnetic; very few weakly magnetic Ap stars with very long periods have been identified and studied. We performed a systematic search based on TESS data to identify super-slowly rotating Ap (ssrAp) stars independently of the strengths of their magnetic fields, with the intention to characterise the distribution of the longest Ap star rotation periods in an unbiased manner. We find 67 Ap stars with no rotational variability in the northern ecliptic hemisphere TESS data. Among them, 46 are newly identified ssrAp star candidates, which is double the number previously found in the southern ecliptic hemisphere. We confirm that super-slow rotation tends to occur less frequently in weakly magnetic Ap stars than in strongly magnetic stars. We present new evidence of the existence of a gap between ~2 kG and ~3 kG in the distribution of the magnetic field strengths of long period Ap stars. We also confirm that the incidence of roAp stars is higher than average in slowly rotating Ap stars. We report the unexpected discovery of nine definite and five candidate δ Sct stars, and of two eclipsing binaries. This work paves the way for a systematic, unbiased study of the longest period Ap stars, with a view to characterise the correlations between their rotational, magnetic, and pulsational properties.

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