论文标题

迈向开普勒田里的真实数量燃烧的巨星。是否有与巨型性质相关的耀斑专业?

Towards the true number of flaring giant stars in the Kepler field. Are there flaring specialities associated with the giant nature?

论文作者

Oláh, K., Kővári, Zs., Günther, M. N., Vida, K., Gaulme, P., Seli, B., Pál, A.

论文摘要

我们的目标是对开普勒场中耀斑的巨星数量进行可靠的估计。通过分析这些恒星的耀斑活性,我们探索了它们的耀斑统计数据和释放的耀斑能量。还研究了振荡在抑制磁活性中的作用。在一个耀眼的巨星样本中,我们寻找可能与巨型性质有关的耀斑特色。我们使用完整的K1数据在文献中发现的两个燃烧巨人列表中汇编的706星样本上搜索耀斑。最后,我们仅证实61颗恒星为耀眼的巨人。在这61个耀眼的巨人中,我们只发现6个也显示出振荡。我们建议,在61个燃烧的巨人中,很大一部分是光谱二进制物的成员,这些二进制已被证明为11个。进行测试以纠正19个进一步研究的,经常燃烧的恒星的低耀斑能量的检测偏置。对于这19颗恒星耀斑能量分布和耀斑频率图(FFD)。巨星上检测到的耀斑的数量仅与旋转时期微弱相关。与先前的估计比例估计更高百分比相比,这位61个确认的爆发巨星仅占整个巨型恒星种群的0.3%。在恒星特性和耀斑特征之间未发现强相关性。耀斑的专业广泛与巨大的性质无关。这与发现,观察到的耀斑持续时间与耀斑能量相关,无论耀斑能量水平和出色的光度级别,都暗示了耀斑的恒星中的常见背景物理,换句话说,背后是一般的缩放效果。

We aim to give a reliable estimate of the number of flaring giant stars in the Kepler field. By analyzing the flaring activity of these stars we explore their flare statistics and the released flare energies. The role of oscillation in suppressing magnetic activity is also investigated. On a sample of flaring giant stars we search for flaring specialities which may be associated with the giant nature. We search for flares using the full K1 data on a sample of 706 stars compiled from two lists of flaring giants found in the literature. In the end, we confirm only 61 stars as flaring giants. Among these 61 flaring giants we found only six which also show oscillations; we suggest that a large fraction of the 61 flaring giants are members of spectroscopic binaries which are proven already for 11. Tests are carried out to correct the detection bias at low flare energies for a subsample of 19 further studied, frequently flaring stars. For these 19 stars flare energy distributions and flare frequency diagrams (FFDs) are constructed. The number of detected flares on giant stars correlate only weakly with the rotational periods. The 61 confirmed flaring giant stars make up only about 0.3% of the entire giant star population in the Kepler database, in contrast with previous estimates of about an order higher percentage. No strong correlation was found between the stellar properties and the flaring characteristics. The wide scale of the flaring specialities are hardly related to the giant nature, if at all. This, together with the finding that the observed flare durations correlate with flare energies, regardless of the flare energy level and stellar luminosity class, suggest common background physics in flaring stars, or in other words, a general scaling effect behind.

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