论文标题

更新的轨道监测和附近M-warf二进制的动力质量

Updated orbital monitoring and dynamical masses for nearby M-dwarf binaries

论文作者

Calissendorff, Per, Janson, Markus, Rodet, Laetitia, Köhler, Rainer, Bonnefoy, Mickaël, Brandner, Wolfgang, Brown-Sevilla, Samantha, Chauvin, Gaël, Delorme, Philippe, Desidera, Silvano, Durkan, Stephen, Fontanive, Clemence, Gratton, Raffaele, Hagelberg, Janis, Henning, Thomas, Hippler, Stefan, Lagrange, Anne-Marie, Langlois, Maud, Lazzoni, Cecilia, Maire, Anne-Lise, Messina, Sergio, Meyer, Michael, Möller-Nilsson, Ole, Rabus, Markus, Schlieder, Joshua, Vigan, Arthur, Wahhaj, Zahed, Wildi, Francois, Zurlo, Alice

论文摘要

通过利用其扩展的预纳前序列进化,年轻的M型二进制物对于精确的等时代二进制特别有用。这些低质量对象的轨道监测对于限制其基本特性至关重要,因为可以从其开普勒运动中提取动态质量。在这里,我们介绍了Astralux大型多样性调查的综合努力,以及来自Sphere红外外系外行星(Shine)项目的填充子程序,以及从Nordical Optical Optical Theescope(NOT)的FastCAM Lucky Lucky Image摄像机(NOT)和NACO仪器的FastCam Lucky Imaging摄像头(vlt)的NACO仪器(vlt)(VLT)的NACO仪器(VLT)中的填充量。在先前的工作的基础上,我们使用档案和新的天文数据来限制20 M型二进制文件的轨道参数。我们确定其中八个二进制文件具有强大的贝叶斯概率,并且属于已知的年轻移动群体(YMGS)。我们首次尝试为样本中的14个二进制文件限制轨道参数,其余6个具有先前安装的轨道,我们为此提供了其他的Astretrotric数据和更新的Gaia可视性。这里为四种二进制文件构建的实质性轨道信息可以直接比较恒星进化模型等速线的单个动力学质量和理论质量,并在不久的将来有其他三个具有暂定的个体动力学质量估计的二元系统。我们基于相应的二进制对的假定YMG年龄,从等化质量的动力学质量和理论质量达成了总体一致。我们获得了单个动力学质量J0728和J2317的两个最佳轨道约束的系统,其动态质量比进化模型所预测的要高。

Young M-type binaries are particularly useful for precise isochronal dating by taking advantage of their extended pre-main sequence evolution. Orbital monitoring of these low-mass objects becomes essential in constraining their fundamental properties, as dynamical masses can be extracted from their Keplerian motion. Here, we present the combined efforts of the AstraLux Large Multiplicity Survey, together with a filler sub-programme from the SpHere INfrared Exoplanet (SHINE) project and previously unpublished data from the FastCam lucky imaging camera at the Nordical Optical Telescope (NOT) and the NaCo instrument at the Very Large Telescope (VLT). Building on previous work, we use archival and new astrometric data to constrain orbital parameters for 20 M-type binaries. We identify that eight of the binaries have strong Bayesian probabilities and belong to known young moving groups (YMGs). We provide a first attempt at constraining orbital parameters for 14 of the binaries in our sample, with the remaining six having previously fitted orbits for which we provide additional astrometric data and updated Gaia parallaxes. The substantial orbital information built up here for four of the binaries allows for direct comparison between individual dynamical masses and theoretical masses from stellar evolutionary model isochrones, with an additional three binary systems with tentative individual dynamical mass estimates likely to be improved in the near future. We attained an overall agreement between the dynamical masses and the theoretical masses from the isochrones based on the assumed YMG age of the respective binary pair. The two systems with the best orbital constrains for which we obtained individual dynamical masses, J0728 and J2317, display higher dynamical masses than predicted by evolutionary models.

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