论文标题
L矮人二进制2MASS J0746+2000AB的多段VLBI:精确的质量测量和确认了两个组件的无线电发射
Multi-Epoch VLBI of L Dwarf Binary 2MASS J0746+2000AB: Precise Mass Measurements and Confirmation of Radio Emission from Both Components
论文作者
论文摘要
调查表明,所有超级矮人(UCDS)的十分之一是可观的无线电发射器,其发射归因于陀螺仪辐射和电子环体辐射的组合和电子旋转性maser不稳定性(ECMI)。 2M J0746+2000AB是由L0和L1.5矮人组成的近距离二元二进制,以前被确定为5 GHz无线电发射的来源。我们使用了非常长的基线干涉法(VLBI)来精确跟踪2010 - 2017年七个时期的无线电发射,并发现两个组件是无线电发射器(已确定的第一个这样的系统),其二级成分是所有阶段的主要发射源。先前鉴定的2.07 h周期爆发被证实起源于次级分量,尽管还从主要成分中鉴定出一个孤立的爆发。我们还将vlbi绝对星形位置与现有的相对轨道体系拟合了来自Markov-Chain Monte Carlo(MCMC)方法的现有的相对轨道星体,以确定两个组分的轨道参数。我们发现,主要和次级光学组件的质量分别为0.0795 +/- 0.0003 msun和0.0756 +/- 0.0003 MSUN,是迄今为止任何UCD的最精确质量估计值。最后,我们将3-位上限为0.9 mjup au的质量和行星的分离,绕两个组成部分中的任何一个。
Surveys have shown that up to one tenth of all ultracool dwarfs (UCDs) are appreciable radio emitters, with their emission attributed to a combination of gyrosynchrotron radiation and the electron cyclotron maser instability (ECMI). 2M J0746+2000AB is a close stellar binary comprised of an L0 and L1.5 dwarf that was previously identified as a source of 5 GHz radio emission. We used very-long-baseline interferometry (VLBI) to precisely track the radio emission over seven epochs in 2010-2017, and found both components to be radio emitters -- the first such system identified -- with the secondary component as the dominant source of emission in all epochs. The previously identified 2.07 h periodic bursts were confirmed to originate from the secondary component, although an isolated burst was also identified from the primary component. We additionally fitted the VLBI absolute astrometric positions jointly with existing relative orbital astrometry derived from optical/IR observations with Markov-chain Monte Carlo (MCMC) methods to determine the orbital parameters of the two components. We found the masses of the primary and secondary optical components to be 0.0795 +/- 0.0003 Msun and 0.0756 +/- 0.0003 Msun, respectively, representing the most precise mass estimates of any UCDs to date. Finally, we place a 3-sigma upper limit of 0.9 Mjup au on the mass and separation of planets orbiting either of the two components.