论文标题

在苔丝发现的低质量前序列黯然失色的二进制

A Low-Mass Pre-Main-Sequence Eclipsing Binary in Lower Centaurus Crux Discovered with TESS

论文作者

Stassun, Keivan G., Torres, Guillermo, Kounkel, Marina, Feliz, Dax L., Bouma, Luke G., Howell, Steve B., Gnilka, Crystal L., Furlan, E.

论文摘要

我们报告发现2M1222-57作为低质量,预序列(PMS)在下半月形crux(LCC)关联中的二进制二进制(EB),使用Gaia可视性和与神经网络年龄估算器的适当动作,我们确定年龄16.2 $ \ pm PM $ \ pm $ 2.2 myr。宽带光谱能量分布(SED)在约10个UM时显示出明显的过量,指示了一个圆盘,而新的斑点成像观察结果显示出一个微弱的三级伴侣,被〜100 au隔开。 H-α发射在轨道时期进行调制,与从内磁盘边缘到中心恒星到达的轨道脉冲吸积流的理论模型一致。从光谱确定的径向速度和苔丝光曲线的联合分析,以及SED和Gaia视差提供的其他紧密约束,我们测量了0.74 MSUN和0.67 MSUN的截止恒星的质量;半径为0.98 RSUN和0.94 RSUN;和3750 K和3645 K的有效温度和两颗恒星的质量和半径的准确度约为1%。相对于LCC时代标准PMS进化模型的预测,测得的半径被膨胀,温度抑制了温度。同样,LI的丰度比这些模型所预测的要耗尽约2个。但是,解释表面磁场的全局和内部影响的模型能够同时再现17.0 $ \ pm $ 0.5 MYR的测量半径,温度和LI丰度。总的来说,2M1222-57系统提供了非常有力的证据表明,年轻恒星中的磁性活性在改变其全球性质和内部物理学。

We report the discovery of 2M1222-57 as a low-mass, pre-main-sequence (PMS) eclipsing binary (EB) in the Lower Centaurus Crux (LCC) association for which, using Gaia parallaxes and proper motions with a neural-net age estimator, we determine an age of 16.2$\pm$2.2 Myr. The broadband spectral energy distribution (SED) shows clear excess at ~10 um indicative of a circumbinary disk, and new speckle-imaging observations reveal a faint, tertiary companion separated by ~100 AU. H-alpha emission is modulated on the orbital period, consistent with theoretical models of orbitally pulsed accretion streams reaching from the inner disk edge to the central stars. From a joint analysis of spectroscopically determined radial velocities and TESS light curves, together with additional tight constraints provided by the SED and the Gaia parallax, we measure masses for the eclipsing stars of 0.74 Msun and 0.67 Msun; radii of 0.98 Rsun and 0.94 Rsun; and effective temperatures of 3750 K and 3645 K. The masses and radii of both stars are measured to an accuracy of ~1%. The measured radii are inflated, and the temperatures suppressed, relative to predictions of standard PMS evolutionary models at the age of LCC; also, the Li abundances are ~2 dex less depleted than predicted by those models. However, models that account for the global and internal effects of surface magnetic fields are able to simultaneously reproduce the measured radii, temperatures, and Li abundances at an age of 17.0$\pm$0.5 Myr. Altogether, the 2M1222-57 system presents very strong evidence that magnetic activity in young stars alters both their global properties and the physics of their interiors.

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