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首页> 外文期刊>Astronomy and astrophysics >The GAPS programme with HARPS-N at TNG - XI. Pr?0211 in M?44: the first multi-planet system in an open cluster
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The GAPS programme with HARPS-N at TNG - XI. Pr?0211 in M?44: the first multi-planet system in an open cluster

机译:TNG - XI的Harps-N与Harps-N的间隙程序。 Pr?0211在m?44:开放簇中的第一个多行星系统

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Context. Open cluster (OC) stars share the same age and metallicity, and, in general, their age and mass can be estimated with higher precision than for field stars. For this reason, OCs are considered an importantlaboratory to study the relation between the physical properties of the planets and those of their host stars, and the evolution of planetary systems. However, only a handful of planets have been discovered around OC main-sequence stars so far, all of them in single-planet systems. For this reason we started an observational campaign within the GAPS collaboration to search for and characterize planets in OCs Aims. We monitored the Praesepe member Pr?0211 to improve our knowledge of the eccentricity of the hot Jupiter (HJ) that is already known to orbit this star and search for additional intermediate-mass planets. An eccentric orbit for the HJ would support a planet-planet scattering process rather than a disk-driven migration after its formation. Methods. From 2012 to 2015, we collected 70 radial velocity (RV) measurements with HARPS-N and 36 with TRES of Pr?0211. Simultaneous photometric observations were carried out with the robotic STELLA telescope to characterize the stellar activity. We discovered a long-term trend in the RV residuals that we show as being due to the presence of a second, massive, outer planet. Orbital parameters for the two planets are derived by simultaneously fitting RVs and photometric light curves, with the activity signal modelled as a series of sinusoids at the rotational period of the star and its harmonics. Results. We confirm that Pr?0211b has a nearly circular orbit ( e = 0.02 ± 0.01 ), with an improvement of a factor two with respect to the previous determination of its eccentricity, and estimate that Pr?0211c has a mass M _(p)?sin? i = 7.9 ± 0.2 M _(J) , a period P & 3500 days and a very eccentric orbit ( e & 0.60 ). This kind of peculiar system may be typical of open clusters if the planet-planet scattering phase, which lead to the formation of HJs, is caused by stellar encounters rather than by unstable primordial orbits. Pr?0211 is the first multi-planet system discovered around an OC star.
机译:语境。开放式集群(OC)星星共享相同的年龄和金属,并且通常,他们的年龄和质量可以估计比田间星的精度更高。因此,ocs被认为是研究行星物理性质与主体恒星的关系之间的重要性,以及行星系统的演变。然而,到目前为止,在OC主序星周围只发现了少数的行星,所有这些星星都在单行星系统中。出于这个原因,我们在差距协作内启动了一个观察活动,以搜索和描述OCS AIMS的行星。我们监控了Praesepe会员Pr?0211以改善我们已经已知轨道上已知的热Jupiter(HJ)的偏心率的知识,并寻找额外的中间质量行星。 HJ的偏心轨道将支持行星行星散射过程,而不是在其形成后的磁盘驱动的迁移。方法。从2012到2015年,我们用Harps-N和36收集了70次径向速度(RV)测量,具有PRα0211的TRE。通过机器人斯特拉望远镜进行同时光度观察,以表征恒星活性。我们在RV残差中发现了一种长期趋势,我们作为存在第二,大规模的外部地球的存在。两个行星的轨道参数通过同时拟合RV和光度光曲线来导出,该活动信号在星形和其谐波的旋转时段中建模为一系列正弦曲线。结果。我们确认Prα0211b具有几乎圆形的轨道(E = 0.02±0.01),随着先前的偏心度的确定,估计Prα0211c具有质量m _(p)的估计,改善了两个因子两者?罪? i = 7.9±0.2 m _(j),一个时期p& 3500天和一个非常偏心的轨道(E> 0.60)。如果行星行星散射阶段导致形成HJ的行星行星散射阶段,这种特殊的系统可能是典型的开放簇是由恒星遭遇而不是不稳定的原始轨道引起的。 Pr?0211是OC星周围发现的第一个多行星系统。

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