论文标题

从Lamost-K2时间域调查中揭示的恒星色球活性

Stellar chromospheric activities revealed from the LAMOST-K2 time-domain survey

论文作者

Han, Henggeng, Wang, Song, Bai, Yu, Yang, Huiqin, Fang, Xiangsong, Liu, Jifeng

论文摘要

通过使用LAMOST时域调查数据,我们根据$ \ rm {H_α} $行研究出色的活动,以在四个$ k $ 2的板中使用2000颗恒星。两个指标,$ r _ {\ rm {hα}}^{'} $和$ r _ {\ rm {\ rm {hα}}^{+} $,是从lamost Spectra计算得出的驱动的色球发射。同时,周期性和变化幅度是从\ emph {k2}光曲线计算的。 $ r _ {\ rm {hα}}}^{'} $ - RO关系和$ r _ {\ rm {hα}}}^{+} $ - ro Ro关系在非饱和衰减区域中显示复杂的配置文件。热星比酷星表现出平坦的斜率和更高的活动水平,并且在$ r _ {\ rm {hα}}}}^{+} $ - $ r_ {o} $关系中,行为更为明显。这与使用其他活动代理的最新研究一致,包括$ l _ {\ rm {x}}/l _ {\ rm {bol}} $,$ r _ {\ rm {\ rm {hk}}}}^{'} $ and'} $和光学光曲线的放大器。 %这可能表明不同种类的恒星遵循衰减区域的不同功率定律。我们的大多数目标都有多个观察结果,其中一些目标表现出$ {\ rm {Hα}} $排放的显着可变性,这可能会导致衰减区域中显示的大散射。我们发现三个目标在旋转阶段显示出正相关的目标,可能表明它们的光曲线由热面部而不是凉星点主导。

By using the LAMOST time-domain survey data, we study stellar activities based on the $\rm{H_α}$ lines for about 2000 stars in four $K$2 plates. Two indices, $R_{\rm{Hα}}^{'}$ and $R_{\rm{Hα}}^{+}$, are computed from LAMOST spectra, the former of which is derived by excluding the photospheric contributions to the $\rm{H_α}$ lines, while the latter is derived by further subtracting the non-dynamo driven chromospheric emission. Meanwhile, the periodicity and variation amplitudes are computed from \emph{K2} light curves. Both the $R_{\rm{Hα}}^{'}$-Ro relation and $R_{\rm{Hα}}^{+}$-Ro relation show complicated profiles in the non-saturated decay region. Hot stars show flatter slopes and higher activity level than cool stars, and the behaviour is more notable in the $R_{\rm{Hα}}^{+}$-$R_{o}$ relation. This is consistent with recent studies using other activity proxies, including $L_{\rm{x}}/L_{\rm{bol}}$, $R_{\rm{HK}}^{'}$ and amplitudes of optical light curves. % This may suggest different kinds of stars follow different power laws in the decay region. Most of our targets have multiple observations, and some of them exhibit significant variability of ${\rm{Hα}}$ emissions, which may cause the large scatters shown in the decay region. We find three targets exhibiting positive correlation in rotational phase, possibly indicating that their optical light curves are dominated by hot faculae rather than cool starspots.

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