论文标题
使用Rossby编号来狩猎反 - 极差旋转的旋转星 - 开普勒场的应用
Hunting for anti-solar differentially rotating stars using the Rossby number -- An application to the Kepler field
论文作者
论文摘要
在太阳能恒星的对流信封的数值模拟中,已经发现了数十年来的抗极差旋转曲线。这些轮廓的特征是缓慢的赤道和快速杆(即,相对于太阳逆转),并且在模拟中发现了高rossby数字(慢旋转器)。已经在进化的恒星中观察到了这样的旋转曲线,但从未在主序列上明确观察到凉爽的太阳型恒星。在这种情况下,在主要太阳能型恒星中检测这种状态将提高我们对它们磁化进化的理解。这项研究的目的是确定在\ textit {kepler}样本中最有希望的较酷的主要序列候选者,用于反对差异旋转。首先,我们引入了一个新的理论公式,以估算出主要序列太阳能恒星的流体rossby数字,$ ro _ {\ rm f} $,从观察量数,并考虑到内部结构和金属性的影响。我们获得了可能显示出抗 - 极差异旋转的最有希望的恒星的列表。我们确定了两个样本:一个在太阳金属性上,包括14个靶标,另一个用于其他金属性,包括8个靶标。我们发现,具有最高$ ro _ {\ rm f} $的目标可能是早期的G或Late-f stars,大约是log $ _ {10} g = 4.37 $ 〜DEX。我们得出的结论是,在\ textit {kepler}样本中存在用于抗 - 极化差旋转的凉爽序列恒星候选。最有希望的候选人是KIC〜10907436,另外两个特别有趣的候选人是太阳能类似物KIC 〜7189915和地震目标KIC 〜12117868。预计这22颗恒星的未来表征将有助于我们了解动力学如何影响高rossby数量的旧太阳能型恒星的磁性和旋转演变。
Anti-solar differential rotation profiles have been found for decades in numerical simulations of convective envelopes of solar-type stars. These profiles are characterized by a slow equator and fast poles (i.e., reversed with respect to the Sun) and have been found in simulations for high Rossby numbers (slow rotators). Rotation profiles like this have been reported observationally in evolved stars, but have never been unambiguously observed for cool solar-type stars on the main sequence. In this context, detecting this regime in main-sequence solar-type stars would improve our understanding of their magnetorotational evolution. The goal of this study is to identify the most promising cool main-sequence stellar candidates for anti-solar differential rotation in the \textit{Kepler} sample. First, we introduce a new theoretical formula to estimate fluid Rossby numbers, $Ro_{\rm f}$, of main-sequence solar-type stars, from observational quantities, and taking the influences of the internal structure and metallicity into account. We obtain a list of the most promising stars that are likely to show anti-solar differential rotation. We identify two samples: one at solar metallicity, including 14 targets, and another for other metallicities, including 8 targets. We find that the targets with the highest $Ro_{\rm f}$ are likely to be early-G or late-F stars at about log$_{10}g=4.37$~dex. We conclude that cool main-sequence stellar candidates for anti-solar differential rotation exist in the \textit{Kepler} sample. The most promising candidate is KIC~10907436, and two other particularly interesting candidates are the solar analog KIC~7189915 and the seismic target KIC~12117868. Future characterization of these 22 stars is expected to help us understand how dynamics can impact magnetic and rotational evolution of old solar-type stars at high Rossby number.