论文标题

泻湖星云中年轻太阳能类似物的红外变异性

Infrared variability of young solar analogs in the Lagoon Nebula

论文作者

Ordenes-Huanca, C., Zoccali, M., Bayo, A., Cuadra, J., Ramos, R. Contreras, Hillenbrand, L. A., Lacerna, I., Abarzua, S., Avendaño, C., Diaz, P., Fernandez, I., Lara, G.

论文摘要

T Tauri恒星是本质上可变的低质量前序列序列星。由于它们拥有的强烈磁场,它们在其表面上产生了暗斑,由于旋转,引入了亮度的周期性变化。此外,周围磁盘的存在可能会通过可变的灭绝或积聚产生磁通变化。两者都可以分别导致亮度降低或增加。在这里,我们使用KS波段中的VVVX调查数据编制了泻湖星云(M8)区域中379台Tauri星的光曲线目录。所有这些恒星已经根据其他指标归类为前恒星。此处提供的数据分布在大约八年的时间内,这为我们在此波长下为这些来源提供了独特的后续时间。根据它们的周期性和不对称程度对光曲线进行分类,以限制负责其变异的物理过程。将周期与文献中的时期进行了比较,基线较短。这使我们能够证明在126颗恒星中,磁性活跃的区域保持稳定数年。此外,将我们的近红外数据与光学开普勒/K2光曲线进行了比较,如果有的话,可以更好地理解所观察到的亮度变化的机制以及它们在不同频段的表现。我们发现,两个频段的周期性都相当良好,但是不对称性将取决于爆发或倾角事件的振幅和观察节奏。

T Tauri stars are low-mass pre-main sequence stars that are intrinsically variable. Due to the intense magnetic fields they possess, they develop dark spots on their surface that, because of rotation, introduce a periodic variation of brightness.In addition, the presence of surrounding disks could generate flux variations by variable extinction or accretion. Both can lead to a brightness decrease or increase, respectively. Here, we have compiled a catalog of light curves for 379 T Tauri stars in the Lagoon Nebula (M8) region, using VVVX survey data in the Ks-band. All these stars were already classified as pre-MS stars based on other indicators. The data presented here are spread over a period of about eight years, which gives us a unique follow-up time for these sources at this wavelength. The light curves were classified according to their degree of periodicity and asymmetry, to constrain the physical processes responsible for their variation. Periods were compared with the ones found in literature, on a much shorter baseline. This allowed us to prove that for 126 stars, the magnetically active regions remain stable for several years. Besides, our near-IR data were compared with the optical Kepler/K2 light curves, when available, giving us a better understanding of the mechanisms responsible for the brightness variations observed and how they manifest at different bands. We found that the periodicity in both bands is in fairly good agreement, but the asymmetry will depend on the amplitude of the bursts or dips events and the observation cadence.

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