基准t型褐矮星HD 19467B的轨道和光谱特征

A. Maire, K. Molaverdikhani, S. Desidera, T. Trifonov, P. Mollière, V. D’Orazi, N. Frankel, J. Baudino, S. Messina, A. Muller, B. Charnay, A. Cheetham, P. Delorme, R. Ligi, M. Bonnefoy, W. Brandner, D. Mesa, F. Cantalloube, R. Galicher, T. Henning, B. Biller, J. Hagelberg, A. Lagrange, B. Lavie, E. Rickman, D. S'egransan, S. Udry, G. Chauvin, R. Gratton, M. Langlois, A. Vigan, M. Meyer, J. Beuzit, T. Bhowmik, A. Boccaletti, C. Lazzoni, C. Perrot, T. Schmidt, A. Zurlo, L. Gluck, J. Pragt, J. Ramos, R. Roelfsema, A. Roux, J. Sauvage
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引用次数: 11

摘要

上下文。由于其形成机制的不确定性,探测和表征其光度、质量和年龄可以独立确定的次恒星伴星对于测试和校准演化模型至关重要。HD 19467是一颗明亮的附近恒星,它拥有一颗低温褐矮星伴星,通过RV和成像技术检测到,这使它成为此类研究的一个有价值的对象。目标我们的目标是进一步表征HD 19467系统的轨道、光谱和物理特性。方法。我们用SPHERE和NaCo仪器提供了新的高对比度成像数据。我们还分析了来自HARPS, NaCo, HIRES, UVES和ASAS的档案数据。我们还使用了来自喜巴谷和盖亚的恒星运动数据。结果。根据等时线、陀螺年代学、化学和运动学参数,我们改进了主恒星的性质,得出了8.0$^{+2.0}_{-1.0}$ Gyr的年龄。这个估计比以前估计的~9-11 Gyr略年轻。在当前的成像、RV和天体测量数据中没有看到轨道曲率。根据数据的联合拟合,我们精炼了HD 19467B的轨道参数:周期398$^{+95}_{-93}$ yr,倾角129.8$^{+8.1}_{-5.1}$°,偏心率0.56$\pm$0.09,升交点经度134.8$\pm$4.5°,近星角64.2$^{+5.5}_{-6.3}$°。我们估计其动态质量为74$^{+12}_{-9}$ MJ。对hd19467b的分光光度资料进行大气模型拟合,结果表明其为无云或极薄云的大气,有效温度为1042$^{+77}_{-71}$ K,表面重力指数为5.34$^{+0.08}_{-0.09}$。假设我们的系统年龄估计,将HD 19467B的热光度和动态质量与模型预测进行比较,表明与Burrows等人的模型更吻合;而其他的进化模型往往低估了它的冷却速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orbital and spectral characterization of the benchmark T-type brown dwarf HD 19467B
Context. Detecting and characterizing substellar companions for which the luminosity, mass, and age can be determined independently is of utter importance to test and calibrate the evolutionary models due to uncertainties in their formation mechanisms. HD 19467 is a bright and nearby star hosting a cool brown dwarf companion detected with RV and imaging, making it a valuable object for such studies. Aims. We aim to further characterize the orbital, spectral, and physical properties of the HD 19467 system. Methods. We present new high-contrast imaging data with the SPHERE and NaCo instruments. We also analyze archival data from HARPS, NaCo, HIRES, UVES, and ASAS. We also use proper motion data of the star from Hipparcos and Gaia. Results. We refine the properties of the host star and derive an age of 8.0$^{+2.0}_{-1.0}$ Gyr based on isochrones, gyrochronology, and chemical and kinematic arguments. This estimate is slightly younger than previous estimates of ~9-11 Gyr. No orbital curvature is seen in the current imaging, RV, and astrometric data. From a joint fit of the data, we refine the orbital parameters for HD 19467B: period 398$^{+95}_{-93}$ yr, inclination 129.8$^{+8.1}_{-5.1}$ deg, eccentricity 0.56$\pm$0.09, longitude of the ascending node 134.8$\pm$4.5 deg, and argument of the periastron 64.2$^{+5.5}_{-6.3}$ deg. We assess a dynamical mass of 74$^{+12}_{-9}$ MJ. The fit with atmospheric models of the spectrophotometric data of HD 19467B indicates an atmosphere without clouds or with very thin clouds, an effective temperature of 1042$^{+77}_{-71}$ K, and a large surface gravity of 5.34$^{+0.08}_{-0.09}$ dex. The comparison to model predictions of the bolometric luminosity and dynamical mass of HD 19467B, assuming our system age estimate, indicates a better agreement with the Burrows et al. models; whereas the other evolutionary models used tend to underestimate its cooling rate.
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