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首页> 外文期刊>The astronomical journal >Magnetic Inflation and Stellar Mass. IV. Four Low-mass Kepler Eclipsing Binaries Consistent with Non-magnetic Stellar Evolutionary Models
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Magnetic Inflation and Stellar Mass. IV. Four Low-mass Kepler Eclipsing Binaries Consistent with Non-magnetic Stellar Evolutionary Models

机译:磁气通胀和恒星质量。IV。四个低质量开普勒蚀型二进制文件与非磁性恒星进化模型一致

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Low-mass eclipsing binaries (EBs) show systematically larger radii than model predictions for their mass, metallicity, and age. Prominent explanations for the inflation involve enhanced magnetic fields generated by rapid rotation of the star that inhibit convection and/or suppress flux from the star via starspots. However, derived masses and radii for individual EB systems often disagree in the literature. In this paper, we continue to investigate low-mass EBs observed by NASA’s Kepler spacecraft, deriving stellar masses and radii using high-quality space-based light curves and radial velocities from high-resolution infrared spectroscopy. We report masses and radii for three Kepler EBs, two of which agree with previously published masses and radii (KIC 11922782 and KIC 9821078). For the third EB (KIC 7605600), we report new masses and show the secondary component is likely fully convective (M 2 = 0.17 ±0.01M ☉ and ☉ = - + R R 0.199 2 0.002 0.001 ). Combined with KIC 10935310 from Han et al., we find that the masses and radii for four low-mass Kepler EBs are consistent with modern stellar evolutionary models for M dwarf stars and do not require inhibited convection by magnetic fields to account for the stellar radii.
机译:低质量蚀二进制二进制文件(EBS)显示系统地显示较大的半径,而不是模型预测,因为它们的质量,金属性和年龄。突出的通货膨胀的解释涉及通过抑制来自星星的恒星的快速旋转而产生的增强磁场,通过星空抑制来自星形的恒星。然而,针对各个EB系统的衍生群和半径往往不同意文献。在本文中,我们继续研究NASA的开普勒航天器,使用高质量空间的光曲线和来自高分辨率红外光谱的径向速度来探测由NASA的开普勒航天器,衍生恒星群和半径的低质量EB。我们向三个开普勒EBS报告群众和半径,其中两个同意以前公布的群众和射线(KIC 11922782和KIC 9821078)。对于第三次EB(KIC 7605600),我们报告了新的群众并显示次要组分可能完全对流(m 2 = 0.17±0.01m☉和= - + r r 0.199 2 0.002 0.001)。与汉等人的KIC 10935310结合起来,我们发现四个低质量开普勒EBS的群众和半径与M矮星的现代恒星进化模型一致,不需要磁场禁止对流,以解释恒星半径。

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