首页> 外文期刊>Astronomy and astrophysics >The GAPS Programme with HARPS-N at TNG - XII. Characterization of the planetary system around HD?108874
【24h】

The GAPS Programme with HARPS-N at TNG - XII. Characterization of the planetary system around HD?108874

机译:在TNG - XII的Harps-N与Harps-N的间隙程序。 HD周围行星系统的特征?108874

获取原文
           

摘要

In order to understand the observed physical and orbital diversity of extrasolar planetary systems, a full investigation of these objects and of their host stars is necessary. Within this field, one of the main purposes of the GAPS observing project with HARPS-N at TNG is to provide a more detailed characterization of already known systems. In this framework we monitored the star, hosting two giant planets, HD?108874 , with HARPS-N for three years in order to refine the orbits, to improve the dynamical study and to search for additional low-mass planets in close orbits. We subtracted the radial velocity (RV) signal due to the known outer planets, finding a clear modulation of 40.2 d period. We analysed the correlation between RV residuals and the activity indicators and modelled the magnetic activity with a dedicated code. Our analysis suggests that the 40.2 d periodicity is a signature of the rotation period of the star. A refined orbital solution is provided, revealing that the system is close to a mean motion resonance of about 9:2, in a stable configuration over 1 Gyr. Stable orbits for low-mass planets are limited to regions very close to the star or far from it. Our data exclude super-Earths with M sin i ? 5 M _(⊕) within 0.4 AU and objects with M sin i ? 2 M _(⊕) with orbital periods of a few days. Finally we put constraints on the habitable zone of the system, assuming the presence of an exomoon orbiting the inner giant planet.
机译:为了了解观察到的辐射行星系统的身体和轨道多样性,需要全面调查这些物体和其主体星星。在该领域中,在TNG处具有Harps-N的间隙观察项目的主要目的之一是提供已经已知系统的更详细表征。在本框架中,我们监控了托管两颗巨大行星的明星,HD?108874,竖琴-N为三年以改善轨道,以改善动态研究,并在密切轨道上搜索额外的低质量行星。我们减去了由于已知的外部行星引起的径向速度(RV)信号,发现40.2 D期的清晰调制。我们分析了RV残差与活动指标之间的相关性,并用专用代码建模了磁活动。我们的分析表明,40.2天的周期性是恒星旋转周期的签名。提供了一种精制的轨道解决方案,揭示该系统接近约9:2的平均运动共振,以1gyl的稳定配置。低质量行星的稳定轨道仅限于非常靠近星星或远离其的地区。我们的数据用M罪排除超级地球吗? 5米_(⊕)在0.4 AU和MIN I的物体内? 2米_(⊕)轨道周期几天。最后,我们在系统的可居住区域的限制,假设存在展望的内部巨大地球。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号