论文标题
矮二进制系统及其行星伴侣的3D轨道结构
3D orbital architecture of a dwarf binary system and its planetary companion
论文作者
论文摘要
由于恒星质量和二进制系统的轨道大小以及星际明星,星形区域和行星 - 行星之间的复杂相互作用的多样性,因此很难充分表征与二进制系统相关的行星系统。在这里,我们报告了低质量二进制系统GJ 896AB的高精度天体观测值,揭示了存在类似木星的行星伴侣(GJ 896AB)的存在。行星伴侣与主要星GJ 896a相关,估计质量为2.3木星质量,轨道周期为284.4天。同时分析具有多个望远镜的光学和红外的相对星体数据,以及在带有很长的基线阵列(VLBA)的无线电波长下获得的绝对星体数据,首次揭示了完全表征的三维(3D)轨道平面系统和平面系统的全面表征。发现行星和二进制轨道处于逆行配置,并且在两个轨道平面之间具有较大的相互倾斜角($φ$ = 148度)。在行星形成的背景下,表征二进制系统的3D轨道结构很重要,因为它可以揭示系统是否是通过磁盘碎片或湍流碎片形成的,以及自旋轨道未对准的起源。此外,由于大多数恒星都在二进制或多个系统中,因此我们对诸如此类系统的理解将有助于进一步理解行星形成的现象。
Because of the diversity of stellar masses and orbital sizes of binary systems, and the complex interaction between star-star, star-planet and planet-planet, it has been difficult to fully characterize the planetary systems associated with binary systems. Here, we report high-precision astrometric observations of the low-mass binary system GJ 896AB, revealing the presence of a Jupiter-like planetary companion (GJ 896Ab). The planetary companion is associated to the main star GJ 896A, with an estimated mass of 2.3 Jupiter masses and an orbit period of 284.4 days. A simultaneous analysis of the relative astrometric data obtained in the optical and infrared with several telescopes, and the absolute astrometric data obtained at radio wavelengths with the Very Long Baseline Array (VLBA), reveals, for the first time, the fully characterized three-dimensional (3D) orbital plane orientation of the binary system and the planetary companion. The planetary and binary orbits are found to be in a retrograde configuration and with a large mutual inclination angle ($Φ$ = 148 deg) between both orbital planes. Characterizing the 3D orbital architecture of binary systems with planets is important in the context of planet formation, as it could reveal whether the systems were formed by disk fragmentation or turbulence fragmentation, as well as the origin of spin-orbit misalignment. Furthermore, since most stars are in binary or multiple systems, our understanding of systems such as this one will help to further understand the phenomenon of planetary formation in general.